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Expression and function of KIR and natural cytotoxicity receptors in NK-type lymphoproliferative diseases of granular lymphocytes.

Using monoclonal antibodies (mAbs) specific for different natural killer (NK) receptors, we studied the lymphocyte population from 18 patients with NK-type lymphoproliferative disease of granular lymphocytes (LDGL). The analysis of both resting and cultured NK cell populations demonstrated that these patients are frequently characterized by NK cells displaying a homogeneous staining with given anti-killer Ig-like receptor (anti-KIR) mAb (11 of 18 patients). In most patients NK cells were characterized by the CD94/NKG2A+ phenotype, whereas only a minor fraction of the cases expressed CD94/NKG2C. In 7 of these patients we could also assess the function of the various NK receptors. Remarkably those KIR molecules that, in each patient, homogeneously marked the NK cell expansion were found to display an activating function as determined by cross-linking with specific anti-KIR mAb. The KIR genotype analysis performed in 13 of 18 cases revealed that in NK-type LDGL certain activating KIRs, as well as certain infrequent KIR genotypes, were detected with higher frequencies as compared to previously analyzed healthy donors. Moreover, most KIR genotypes included multiple genes coding for activating KIRs. The analysis of non-HLA-specific triggering receptors indicated that the natural cytotoxicity receptors (NKp46, NKp30) were expressed at significantly low levels in freshly drawn NK cells from most patients analyzed. However, in most instances the expression of NKp46 and NKp30 could be up-regulated on culture in interleukin 2. Our data indicate that in NK-LDGL the expanded subset is frequently characterized by the expression of a given activating KIR, suggesting a direct role for these molecules in the pathogenetic mechanisms of this disorder.

Antibodies, Monoclonal↗

A polymorphism of DRD2 gene and brain atrophy in methamphetamine psychosis.

Our group, Ujike et al., recently reported that the A1 allele of TaqI A polymorphism of the dopamine receptor D2 (DRD2) gene, associated with transient psychosis, significantly differs from that of patients with prolonged psychosis in methamphetamine psychosis. Therefore, we examined the association between the TaqI A polymorphism of the DRD2 gene and the brain MRI view for patients with methamphetamine psychosis. The subjects underwent brain MRI scans using the FLAIR method. Genotyping was performed by PCR-RFLP methods using genomic DNA extracted from peripheral blood by the phenol method. Ten subjects had the A1/A2 genotype, eleven subjects had the A2/A2 genotype, and no subject had the A1/A1 genotype. The domain size, including the thalamus and basal ganglia that were inside each side of the putamens, did not differ between the three groups (the A1/A2-group, the A2/A2-group, and the young healthy person group). In the comparison based on this domain, the temporal lobe tended to narrow in the A2/A2-group compared to the A1/A2-group (P = .06). The other domain (cerebrum, corpus callosum, etc.) showed no difference between the A1/A2-group and the A2/A2-group. It is suggested that in methamphetamine psychosis the TaqI A polymorphism not only regulates prolongation of psychosis symptoms but also influences the form of the temporal lobe.

Adult↗

Platelet glycoprotein IIIa PlA1/A2 polymorphism and its relationship with diabetic nephropathy in type 2 diabetic patients.

OBJECTIVE: The increased prevalence of cardiovascular events in type 2-diabetic patients with micro- or macroalbuminuria is not completely explained by an excess of conventional risk factors for atherosclerosis. Genetic polymorphism within the platelet glycoprotein IIIa has been implicated in the etiology of acute coronary syndromes. We tested the hypothesis that the PI(A1/A2) polymorphism could in part account for the increased cardiovascular risk of type 2-diabetic patients with micro- or macroalbuminuria compared to normoalbuminuric diabetic patients. RESEARCH DESIGN AND METHODS: We have examined the PI(A1/A2) polymorphism of the platelet glycoprotein IIIa in type 2-diabetic patients: 94 with micro-, macroalbuminuria, and 94 with normoalbuminuria, matched for age, sex and body mass index. PI(A) genotypes were performed by polymerase chain reaction and restriction enzyme digestion. RESULTS: There was no significant difference in the prevalence of PI(A2)-positive genotypes (either PI(A1/A2) or PI(A2/A2)) in the two groups of patients (chi2 = 0.19, df = 1 , p = 0.66). CONCLUSIONS: These results suggest that carriage of the platelet glycoprotein IIIa PI(A2) allele does not contribute to explain the increased cardiovascular risk associated with micro- or macroalbuminuria in type 2 diabetes.

Aged↗

[Regularities in the spread of hepatitis C virus and its genotypes in Russian and countries within the former USSR].

The incidence of markers of hepatitis C virus (HCV in the blood of 4216 normal subjects living in the European Russia (Northern, North-Western, Central, Central Chernozem, Volga-Vyatka, Volga, and North Caucasian regions), in the Urals, in Siberia (Eastern Siberian region), in the Far East, and in Monogolia is assessed. The incidence of antibodies to HCV varied from 0.7% in the Central region to 3.8% in the Central Chernozem and 10.7% in Mongolia. HCV genotyping (identification of 1a, 1b, 2a, 2b, and 3a genotypes) was performed using 469 RNA of HCV-positive sera of donors and patients collected in Russia, Moldova, Turkmenistan, and Mongolia. The 1b genotype predominated everywhere (68.9%), its incidence being the highest in Moldova (96%). Unclassifiable variants of HCV were found in 28 (6%) of sera. The regularities of HCV genotypes circulation in the European Russia were the same as in other European countries, whereas their prevalence in Eastern Russia was rather like that in China or Japan. The prevalence of genotypes did not depend on the clinical manifestations of diseases caused by HCV.

Adolescent↗

Progression to type 1 diabetes in islet cell antibody-positive relatives in the European Nicotinamide Diabetes Intervention Trial: the role of additional immune, genetic and metabolic markers of risk.

AIMS/HYPOTHESIS: To examine the role of additional immune, genetic and metabolic risk markers in determining risk of diabetes in islet cell antibody (ICA)-positive individuals with a family history of type 1 diabetes recruited into the European Nicotinamide Diabetes Intervention Trial. METHODS: Five hundred and forty-nine first-degree relatives with confirmed ICA levels > or =20 Juvenile Diabetes Foundation units (mean age 15.9 years; interquartile range 10.4-33.7 years) were recruited from 20 countries. OGTTs and IVGTTs were performed at baseline, antibodies to glutamate decarboxylase (GADA), protein tyrosine phosphatase (IA-2A) and insulin (IAA) were determined by RIA, and HLA class II genotyping was performed by PCR of sequence-specific oligonucleotides. RESULTS: One hundred and fifty-nine participants developed diabetes within 5 years. Univariate analysis showed that the cumulative risk of development of diabetes within 5 years varied according to age, relationship to the proband, positivity for IAA, IA-2A and GADA, number and combination of islet antibodies, HLA class II genotype, baseline glucose tolerance, and first-phase insulin secretion, but not gender or incidence of childhood type 1 diabetes in the background population. Children aged < or =10 years had a 59% risk of diabetes within 5 years, compared with 11% in those > or =25 years (p<0.0001). Using multivariate analysis, independent determinants were age, first-phase insulin response, baseline glucose tolerance and number of additional antibody markers, but not antibody type or genotype. Individuals <25 years with two or more additional antibodies at baseline had a 62% risk of diabetes within 5 years and these combined criteria identified 81% of the cases in the whole cohort. CONCLUSIONS/INTERPRETATION: We suggest that screening and recruitment for future intervention trials should be limited to family members aged <25 years, and should be based on islet autoantibodies alone.

Adolescent↗

Rationale and study design of the CardioGene Study: genomics of in-stent restenosis.

BACKGROUND AND AIMS: in-stent restenosis is a major limitation of stent therapy for atherosclerosis coronary artery disease. The CardioGene Study is an ongoing study of restenosis in bare mental stents (BMS) for the treatment of coronary artery disease. The overall goal is to understand the genetic determinants of the responses to vascular injury that result in the development of restenosis in some patients but not in others. Gene expression profiling at transcriptional and translational levels provides global assessment of gene activity after vascular injury and mechanistic insight. Furthermore, the delineation of genetic biomarkers would be of value in the clinical setting of risk-stratify patients prior to stent therapy. Prospective risk stratification would allow for the rational selection of specialized treatments against the development of in-stent restenosis (ISR), such as drug-eluting stents. SETTING: Patients are enrolled at two sites in the US with high-volume cardiac catheterization facilities: the William Beaumont Hospital in Royal Oak, MI, USA, and the Mayo Clinic in Rochester, MN, USA. STUDY DESIGN: Two complementary study designs are used to understand the molecular mechanisms of restenosis and the genetic biomarkers predictive of restenosis. First, 350 patients are enrolled prospectively at the time of stent implantation. Blood is sampled prior to stent placement and afterwards at 2 weeks and 6 months. The clinical outcome of restenosis is determined 6 and 12 months after stent placement. The primary outcome is clinical restenosis at 6 months. The major secondary outcome is clinical restenosis at 12 months. Second, a corollary case-control analysis will be carried out with the enrollment of an additional 250 cases with a history of recurrent restenosis after treatment with BMS. Controls for this analysis are derived from the prospective cohort. PATIENTS AND METHODS: Consecutive patients presenting to the cardiac catheterization laboratory are screened, informed about the study and enrolled after signing the consent form. Enrollment has been completed for the prospective cohort, and enrollment of the additional group is ongoing. A standardized questionnaire is used to collect clinical data primarily through direct patient interview to assess medical history, medication use, functional status, family history, environmental factors, and social history. Further data are abstracted from the medical charts and catheterization reports. A total of 276 clinical variables are collected per individual at baseline, and 49 variables are collected at each of the 6- and 12-month follow-up visits. A Clinical Events Committee adjudicates clinical outcomes. Blood samples are processed at each clinical enrollment site using standardized operating procedures. From each blood sample, several aliquots are prepared and stored of peripheral blood mononuclear cells, granulocytes, platelets, serum, and plasma. Additionally, a portion of each patient's leukocytes is cryopreserved for future cell-line creation. Samples are frozen and shipped to the National Heart, Lung and Blood Institute (NHLBI). Additional materials generated in the analysis of the samples at the NHLBI are frozen and stored, including isolated genomic DNA, total RNA, reverse transcribed cDNA libraries and labeled RNA hybridization mixtures used in microarray analysis. Per individual in the prospective cohort, high-quality transcript profiles of peripheral blood mononuclear cells at each time of blood sampling are obtained using Affymetrix U133A microarrays (Affymetrix, Santa Clara, CA, USA). Per chip, this yields 495,930 features per individual per time of sampling. This represents expression levels for 22,283 genes per patients oer time of blood sampling, including 14,500 well-characterized human genes. Proteomics of plasma is performed with multidimensional liquid chromatography and tandem mass spectrometry. Protein expression is examined similarly to mRNA expression as a measure of gene expression. Genotyping is performed in two manners. First, those genes showing differential expression at the levels of mRNA and protein are investigated using a candidate gene approach. Specific variants in known gene regulatory regions, such as promoters, are sought initially, as those variants may explain differences in expression level. Second, a genome-wide scan is used to identify genetic loci that are associated with ISR. Those regions identified are further examined for genes that show differential expression in the mRNA microarray profiling or proteomics investigations. These genes are finely investigated for candidate SNPs and other gene variants. Complementary genomic and proteomic approaches are expected to be robust. Integration of data sets is accomplished using a variety of informatics tools, organization of gene expression into functional pathways, and investigation of physical maps of up- and downregulated sets of genes. CONCLUSIONS: The CardioGene Study is designed to understand ISR. Global gene and protein expression profiling define molecular phenotypes of patients. Well-defined clinical phenotypes will be paired with genomic data to define analyses aimed to achieve several goals. These include determining blood gene and protein expression in patients with ISR, investigating the genetic basis of ISR, developing predictive gene and protein biomarkers, and the identification of new targets for treatment.

Clinical Trials as Topic↗

Possible role of preproghrelin gene polymorphisms in susceptibility to bulimia nervosa.

Previous investigations have suggested that ghrelin, an endogenous orexigenic peptide, is involved in the pathology of eating disorders. We conducted a study to determine whether any preproghrelin gene polymorphisms are associated with eating disorders. Three hundred thirty-six eating disorder patients, including 131 anorexia nervosa (AN)-restricting types (AN-R), 97 AN-binge eating/purging types (AN-BP) and 108 bulimia nervosa (BN)-purging types (BN-P), and 300 healthy control subjects participated in the study. Genotyping was performed to determine the polymorphisms present, and with this information, linkage disequilibrium (LD) between the markers was analyzed and the distributions of the genotypes, the allele frequencies, and the haplotype frequencies were compared between the groups. The Leu72Met (408 C > A) (rs696217) polymorphism in exon 2 and the 3056 T > C (rs2075356) polymorphism in intron 2 were in LD (D' = 0.902, r2 = 0.454). Both polymorphisms were significantly associated with BN-P (allele-wise: P = 0.0410, odds ratio (OR) = 1.48; P = 0.0035, OR = 1.63, for Leu72Met and 3056 T > C, respectively). In addition, we observed a significant increase in the frequency of the haplotype Met72-3056C in BN-P patients (P = 0.0059, OR = 1.71). Our findings suggest that the Leu72Met (408 C > A) and the 3056 T > C polymorphisms of the preproghrelin gene are associated with susceptibility to BN-P.

Adult↗

Association between the tryptophan hydroxylase-1 gene A218C polymorphism and citalopram antidepressant response in a Korean population.

Tryptophan hydroxylase-1 (TPH1) is the rate-limiting enzyme in serotonin biosynthesis, and selective serotonin reuptake inhibitors (SSRIs) exert their activity enhancing the general serotonergic tone. Citalopram is the most selective SSRI, with little or no affinity for a variety of receptor types. The goal of this study was to investigate whether the A218C polymorphism of the TPH1 gene is associated with the citalopram antidepressant response in subjects with major depressive disorder (MDD). All of the patients were evaluated using the 21-item Hamilton Depression Rating Scale before beginning and after 8 weeks of citalopram treatment. Genotyping was performed with the polymerase chain reaction. The remission rate to citalopram treatment was worse in MDD subjects with the TPH1 A/A and A/C genotypes than in those with the TPH1 C/C genotype. Our results suggest that the A218C polymorphism of the TPH1 gene serves as a modulator of antidepressant activity, especially in terms of treatment remission.

Adult↗

No association of glutathione S-transferase M1 gene polymorphism with diabetic nephropathy in Japanese type 2 diabetic patients.

Oxidative stress possibly contributes to the development of diabetic nephropathy. Therefore, the levels of endogenous antioxidants may be one of determinants of the susceptibility to diabetic nephropathy. Glutathione S-transferases (GSTs) can work as one of endogenous antioxidants to protect cells from oxidative stress. The M1 member of GST mu class (GSTM1) is polymorphic and only expressed in 55-60% of Caucasians because of the homozygous deletion of the gene (null genotype). Recent studies have provided evidence that the GSTM1 null genotype, i.e. lack of the GSTM1 activity, is associated with an increased susceptibility to lung cancer and colorectal cancer. The present study was conducted to determine whether the genetic polymorphism influences the development of diabetic nephropathy. We examined 105 patients with diabetic nephropathy and 69 patients without diabetic nephropathy in Japanese type 2 diabetic patients with proliferative diabetic retinopathy. GSTM1 genotyping was performed by polymerase chain reaction. The two patient groups were well matched with regard to age, body mass index and HbAlc. GSTM1 null genotype was observed in 48.6% of patients with nephropathy versus 55.1% of patients without nephropathy. The frequency of GSTM1 null genotype was not significantly higher in the patient group with nephropathy than in the patient group without nephropathy. This study is the first to investigate the association of GSTM1 gene polymorphism with the development of diabetic nephropathy. The present results suggest that GSTM1 null genotype does not contribute to the development of diabetic nephropathy in Japanese type 2 diabetic patients.

Aged↗

Effect of genetic variants of CCR2 and CCL2 on the natural history of HIV-1 infection: CCL2-2518GG is overrepresented in a cohort of Spanish HIV-1-infected subjects.

BACKGROUND AND OBJECTIVES: Polymorphisms in the genes that encode for the CCR2 chemokine receptor and its natural ligand CCL2 have been shown to influence the natural history of HIV-1 infection, although data are inconsistent. Our aim was to determine whether functionally active CCR2 and CCL2 genetic variants influence the risk of infection and disease progression in a cohort of white Spaniards. PATIENTS AND METHODS: This was a multicenter genetic association case-control study. Two single nucleotide polymorphisms (SNPs), V64I (G > A) of the CCR2 gene and -2518 (A > G) of the CCL2 gene, were assessed in 318 individuals: 73 HIV-1-infected long-term nonprogressors (LTNPs) of >16 years duration, 109 HIV-1-infected usual progressors (UPs), 36 heavily exposed to HIV-1 but uninfected individuals (EUs), and 100 control subjects. The distribution of the CCR5Delta32 allele was also assessed. Genotyping was performed using polymerase chain reaction (PCR) restriction fragment length polymorphisms (RFLPs) or PCR and automatic sequencing analysis methods on white blood cell DNA. Genotype and allele frequencies were compared by the chi2 test and the Fisher exact test. RESULTS: CCR2 genotype distribution and allele frequencies showed nonsignificant differences between groups. The distribution of CCL2 alleles showed no significant differences between groups. HIV-1-infected individuals had, however, a significantly higher prevalence of the variant homozygous CCL2 GG genotype compared with EUs (P = 0.02). This result persisted when we studied only individuals with wild-type CCR5. Genotype and allele distribution of CCL2 was similar in HIV-1-infected UPs and LTNPs. CONCLUSIONS: In our cohort of white Spaniards, homozygosity for the variant CCL2-2518GG genotype is overrepresented in HIV-1-infected subjects.

Adult↗

Co-infection with hepatitis B virus genotype D and other genotypes in Western Japan.

OBJECTIVE: Genotypes B and C are the prevalent hepatitis B virus (HBV) genotypes in eastern Asia. Although very rare in this region of the world, genotype D was found to be prevalent in a small area of western Japan. In this study, we confirm the frequency and clinical significance of co-infection with different genotypes among patients from that area infected with genotype D. METHODS: Twenty-three patients from the same area of western Japan infected with HBV genotype D, determined using a genotyping enzyme immunoassay, were studied. Cloning was done using DNA extracted from serum samples, and polymerase chain reaction assays with the restriction fragment length polymorphism for HBV genotyping were performed with 10 clones from each patient. RESULTS: Four (17.4%) of the 23 patients were found to be co-infected with HBV genotype C, and the HB surface antigen subtype was ayw in both mono- and co-infected patients. No clinical differences were found between mono-infected and co-infected patients carrying genotype D. CONCLUSION: A significant number of patients from the study area found to be infected with HBV genotype D were co-infected with genotype C. Additional study with a larger number of patients is needed to elucidate the possible clinical significance.

Adolescent↗

Multilocus variable-number tandem-repeat analysis for investigation of Clostridium difficile transmission in Hospitals.

Clostridium difficile is a major cause of antibiotic-associated gastrointestinal illness. Recently, an increased incidence of hospital-acquired infections with severe outcomes has been reported in North America and Europe. Current molecular-typing methods for detection of outbreaks and nosocomial transmission are labor-intensive, subjective, or insufficiently discriminatory to differentiate between closely related strains. This report describes the development of multilocus variable-number tandem-repeat (VNTR) analysis (MLVA) for molecular subtyping of C. difficile. Seven VNTR loci were identified from the C. difficile 630 genome by screening an isolate collection of various restriction endonuclease analysis (REA) types. The stability of the loci for short-term epidemiologic investigations was determined by performing MLVA on consecutive isolates of the same REA type from individual patients collected over as many as 90 days. Validation of MLVA for molecular genotyping was performed by direct comparison with REA results obtained from Hines Veterans Affairs Hospital on a combined collection of 40 C. difficile isolates from two different sources. The ability of MLVA to detect outbreaks was demonstrated on a collection of tertiary-care hospital isolates from a defined C. difficile outbreak in 2001. MLVA successfully clustered C. difficile isolates of the same REA type and discriminated isolates of unique REA type. Thus, MLVA is an objective, portable genotyping method that permits reliable detection of C. difficile outbreaks and can aid epidemiologic investigations of nosocomial transmission.

Bacterial Typing Techniques↗

Reappearance of HIV multidrug-resistance in plasma and circulating lymphocytes after reintroduction of antiretroviral therapy.

BACKGROUND: After the discontinuation of antiretroviral therapy in HIV-infected patients with highly resistant virus, the detectability of viral resistance mutations quickly decreases. To which extent this represents a true loss of resistance or rather a detectability phenomenon remains unclear. OBJECTIVES: To monitor virologic response and resistance pattern during a non-strategic treatment interruption in the presence of highly drug-resistant viral strains. STUDY DESIGN: We performed serial genotypic resistance analyses on viral DNA isolated from a patient with a multidrug-resistant human immunodeficiency virus infection who discontinued and later on reintroduced antiretroviral therapy. Sequencing was performed on viral DNA from plasma as well as DNA from circulating leukocytes. RESULTS: While under combination antiretroviral therapy with two nucleosidic reverse transcriptase inhibitors, a non-nucleosidic reverse transcriptase inhibitor and a protease inhibitor, the viral load of the patient was around five logs. Genotypic resistance to all available agents was detected during this time. Antiretroviral therapy was then interrupted, and 14 weeks later an almost complete reversion of the virus to wild type was observed. After introduction of a new antiretroviral therapy regimen, the reappearance of nearly all of the formerly present resistance mutations had to be noted within 6 weeks, including mutations without known relation to any of the drugs in the new regimen. CONCLUSIONS: We obviously observed not the de novo appearance of a complex resistance pattern under just 6 weeks of potent antiretroviral therapy, but a reappearing archival strain of the virus. This finding provides evidence for subdetectable persistence of resistant variants during treatment interruptions. Therefore, resistance analyses from peripheral blood performed in times of treatment interruptions should be interpreted with caution as they may provide incomplete information about the resistance profile soon after reintroduction of therapy.

Adult↗

Novel interleukin 1beta polymorphism increased the risk of gastric cancer in a Korean population.

BACKGROUND: Polymorphisms in the gene for interleukin 1beta (IL-1B) have been found to increase the risks of gastric cancer and its precursors in response to Helicobacter pylori infection in white populations. however, there has been no independent confirmation of the role of IL-1B markers in gastric cancer patients from Asian populations. Moreover, there have been conflicting data regarding the effect of IL-1B-511/-31 on the risk of gastric cancer or its precursors in Asian populations. Therefore, we assessed an additional polymorphism in the promoter region of IL-1B at position-1473 with the IL-1B-511/-31 polymorphisms in a Korean population. METHODS: In a case-control study, including 331 gastric cancer cases and 433 controls, we assessed the association between the three polymorphisms and the risk of gastric cancer. All genotyping was performed in duplicate. To assess the DNA-binding activity of IL-1B-1473 in vitro, we performed an electrophoretic mobility shift assay (EMSA). RESULTS: When cases were divided according to the histologic type of the tumor, a significant difference in genotype frequencies for IL-1B-1473 was observed only between intestinal-type cases and controls (odds ratio [OR], 1.8; 95% confidence interval [CI], 1.0-3.5 and OR 2.1 and 95% CI, 1.1-4.2 in the CG and GG genotypes, respectively). In the cases, there was a deviation from Hardy-Weinberg equilibrium in the IL-1B-511/-31 loci confined to the intestinal type, due to the excess of heterozygotes. The IL-1B-1473G allele showed decreased binding to nuclear extract, indicating a wearker promoter activity on EMSA. CONCLUSIONS: We identified a novel single-nucleotide polymorphism, 1473C-->G, in the IL-1B promoter that was significantly associated with gastric cancer among Koreans. Our results also suggest that the association between IL-1B polymorphism and an increased risk of gastric cancer may depend on the histologic type of gastric cancer.

Adult↗

Fc gamma RIIa polymorphism: a susceptibility factor for immune complex-mediated lupus nephritis in Brazilian patients.

BACKGROUND: Fc gamma RIIa is a low affinity receptor that has two co-dominantly expressed alleles, R131 and H131, which differ in their ability to bind immunoglobulin G (IgG) subclasses. Cells expressing H131 bind more efficiently complexed IgG2 and IgG3 than those expressing the R131 variant. The Fc gamma RIIa polymorphism has been shown to be associated with lupus nephritis. Here we evaluated the relevance of Fc gamma RIIa gene polymorphism in the development of lupus immune complex (IC)-mediated nephritis by comparing the genotype and allelic distribution of this receptor in lupus nephritis to ethnically matched healthy controls in Brazilians. METHODS: 119 systemic lupus erythematosus (SLE) patients and 48 healthy volunteers were recruited. Fc gamma RIIa genotyping was performed by PCR with allele-specific primers to distinguish between the two allelic forms (H131 and R131). RESULTS: Comparison of Fc gamma RIIa genotypes distribution in SLE patients with nephritis and in controls showed a significant increase in Fc gamma RIIa-R131 homozygosity (P < or = 0.02). The genotype distribution in lupus nephritis (45% with Fc gamma RIIa-R/R131, 30% with H/R131 and 25% with H/H131) was distinct from that observed in controls (21% with Fc gamma RIIa-R/R131, 52% with H/R131 and 27% with H/H131). In contrast, there was no difference in the distribution of Fc gamma RIIa genotypes in lupus without nephritis and controls (P = 0.3). Reinforcing the relevance of Fc gamma RIIa polymorphism in IC-mediated nephritis, patients with renal failure had an over-representation of the R131 allele (70%) when compared with normal controls (47%) (P = 0.06). CONCLUSIONS: The skewed distribution of Fc gamma RIIa genotypes with the predominance of homozygous R/R131 genotype observed in lupus nephritis emphasizes its importance as a heritable risk factor for IC-mediated renal injury in Brazilian lupus patients.

Alleles↗

Simultaneous identification and typing of multi-drug-resistant Mycobacterium tuberculosis isolates by analysis of pncA and rpoB.

In Mycobacterium tuberculosis there is a strong correlation between in-vitro resistance to rifampicin (RIF) and pyrazinamide (PZA) and mutations in rpoB and pncA, respectively. Approximately 50 mutations associated with resistance have been reported for rpoB and 70 for pncA, and, theoretically, many more are possible. Therefore, the identification of rpoB and pncA mutations in M. tuberculosis might be used for the simultaneous determination of resistance and for typing multi-drug-resistant (MDR) strains during possible outbreaks. The present study examined four sensitive and six MDR isolates of M. tuberculosis from Turkey and eight isolates from a nosocomial MDR tuberculosis (TB) outbreak in the UK. Gene mutations were identified by the Innogenetics LiPA rpoB assay or automated sequencing, or both. All the sensitive isolates had rpoB and pncA wild-type genotypes, whereas all the RIF- and PZA-resistant isolates had rpoB and pncA mutations. All four mutations seen in rpoB, but none of the six in pncA, had been reported previously. The rpoB and pncA mutations seen in the Turkish isolates defined six distinct genotypes amongst the six MDR isolates, while standard IS6110 typing discriminated only four. All isolates from the single strain MDR-TB outbreak had identical genotypes. Rapid genotyping was performed on the sputum from a patient who presented 2 years after the initial MDR-TB outbreak and this showed rpoB and pncA genotypes identical to the other outbreak isolates. This result was available within 36 h. The analysis of rpoB and pncA is a rapid and practical means of simultaneously identifying and typing MDR isolates of M. tuberculosis.

Amidohydrolases↗

Environment-dependent performance and fitness of Iris brevicaulis, I. fulva (Iridaceae), and hybrids.

We tested the relative fitness of two Louisiana Iris species (Iris brevicaulis and I. fulva) and their first-generation backcross hybrids in three experimental watering treatments: dry, field capacity, and flooded. Leaf area expansion rate, gas exchange (A(max), g(s), c(i)), and biomass at final harvest were measured for each species and hybrid class in all three environmental treatments. Fitness (based on total biomass) of the four genotypic classes differed significantly with environment. All genotypic classes performed most poorly in the dry treatment. The fitness ranking of genotypic class also changed across environments (significant genotypic class by treatment interaction) with hybrid genotype fitness shifting relative to parental genotypes. Integrating over all treatments, backcrosses to I. fulva showed the lowest fitness, whereas backcrosses to I. brevicaulis outperformed I. fulva. The differences in fitness were apparently achieved by a combination of differences in photosynthesis and allocation. In this system, hybrids are not necessarily less fit than their parents, and the relationship between hybrid and parental fitness is influenced by environmental conditions, lending support to the Hybrid Novelty model of hybrid zone evolution.

Journal Article↗

Characterization of DPYD pharmacogenetic variation in Mexican patients with gastrointestinal malignancies.

PURPOSE: Fluoropyrimidines are among the most widely used chemotherapeutic agents for gastrointestinal malignancies, but interindividual variability in dihydropyrimidine dehydrogenase (DPD) activity, encoded by DPYD, can lead to severe or lethal toxicities. Most pharmacogenetic data on DPYD originates from European populations, limiting the applicability of current guidelines in admixed groups. METHODS: We evaluated DPYD pharmacogenetic variation and its association with fluoropyrimidine-related adverse events in Mexican patients with gastrointestinal cancers. Adverse events were prospectively assessed using CTCAE v5.0. Genotyping was performed with the Illumina Global Screening Array and analyzed using PLINK and R. RESULTS: A total of 208 patients were enrolled, and 192 samples passed genotyping quality control; 156 patients received fluoropyrimidines. Only three patients (1.5%) carried actionable DPYD variants (rs3918290, rs67376798 and rs75017182), yielding allele frequencies of 0.26%, approximately ten-fold lower than those reported in European cohorts. Genome-wide analyses did not reveal significant genotype-phenotype associations, though suggestive variants in SDK1, ZPBP, and FGF12 were observed. Pharmacodynamic analyses identified frequent variation in TYMS rs2847153 and MTHFR rs1801133, both previously associated with fluoropyrimidine toxicity. Overall, patients exhibited a predominantly Native Mexican ancestry (56.5%), which may explain the markedly low frequency of actionable DPYD alleles commonly found in European populations. CONCLUSIONS: These findings highlight the limited representation of admixed populations in pharmacogenetic research and underscore the need for population-specific data to inform safe and equitable fluoropyrimidine dosing.

Humans↗