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Splice-site genetic polymorphism of the human kallikrein 12 (KLK12) gene correlates with no substantial expression of KLK12 protein having serine protease activity.

The human kallikrein 12 (KLK12) gene is a new member of the KLK gene family, some members of which are implicated in the initiation and progression of cancer. In this study, we examined 50 non-cancerous tissues from Japanese patients with primary gastric cancer to determine the presence of genetic polymorphisms in the KLK12 gene using polymerase chain reaction (PCR)-single-strand conformation polymorphism and sequencing. Four different types of genetic polymorphisms were identified: one at a splice-donor site of intron 4 (c.457+2T>C), two in exon 6 (c.618_619delTG:p.Cys206fsX72 and c.735G>A:p.Met245Ile), and one in intron 3. The c.457+2T>C polymorphism was observed at a high frequency (allele frequency:0.63), compared to the frequencies of the two polymorphisms in exon 6 (allele frequency:0.01). Reverse transcriptase (RT)-PCR and Western blot analyses revealed that the c.457+2T>C polymorphism was associated with a splicing abnormality and that the expression of the human KLK12 protein (hK12), corresponding to the putative serine protease, was absent in individuals with a c.457+2C/C genotype but not in individuals with the T/T or T/C genotypes. We also found that recombinant His6-tagged hK12 has activity that cleaves chromogenic substrate (H-D-Pro-L-Phe-L-Arg-p-nitroaniline dihydrochloride), that is, serine protease activity. These results indicate that individuals with the c.457+2C/C genotype have no substantial expression of hK12 serine protease.

Carcinoma↗

Genetic polymorphisms associated with venous and arterial thrombosis: an overview.

OBJECTIVE: To provide an overview of genetic polymorphisms associated with thrombotic cardiovascular disease. DATA SOURCES: A literature search using the National Library of Medicine database. STUDY SELECTION: The literature on genetic polymorphisms associated with venous and arterial thrombosis was reviewed. DATA EXTRACTION: Based on the literature review, the clinical significance of polymorphisms in various coagulation proteins was assessed and a summary was developed. CONCLUSIONS: Thrombosis is a multifactorial disorder, with both congenital and acquired risk factors. It is now clear that there are many genetic abnormalities that impart an increased risk for thrombophilia, and the presence of more than 1 abnormality results in a further increased risk of thrombosis. In hemostasis, there is a balance between procoagulant factors and natural anticoagulant proteins. The first genetic thrombotic disorders described were deficiencies of the natural anticoagulants, such as antithrombin, protein C, and protein S, but these abnormalities are rare and are caused by many different mutations. More recently, single polymorphisms that are relatively common in the general population have been described in procoagulant factors, such as factor V and prothrombin, which impart an increased risk for venous thrombosis. As more scrutiny is placed on the hemostatic system, further polymorphisms have come to light. The current challenge is to elucidate the relationship between these new polymorphisms and either venous or arterial thrombotic cardiovascular disease.

Arterial Occlusive Diseases↗

[CYP2D6 and GSTM1 genetic polymorphism and lung cancer susceptibility].

OBJECTIVE: To evaluate the relationship between CYP2D6 and GSTM1 genetic polymorphism and lung cancer susceptibility among Cantonese in China. METHODS: In a case-control study, PCR was used to identify CYP2D6 and GSTM1 genotypes and restriction enzyme BstNI was used to identify a specific point mutation of CYP2D6. RESULTS: Between lung cancer patient group and normal control group CYP2D6 genetic polymorphism did not show frequency distribution differences but that of GSTM1 did (58.7% n = 46, 35.7%, n = 70, P < 0.05) OR = 2.56(1.11-2.44). CONCLUSION: There is no association between CYP2D6 G-A mutation and lung cancer susceptibility, while individuals with GSTM1 -/- genotype are susceptible to lung cancer.

Cytochrome P-450 CYP2D6↗

[Analysis on genetic polymorphism of 13 STR loci on chromosomes 11 and 19 in Chinese Hans].

OBJECTIVE: To analyze the genetic polymorphism of 8 STR loci on chromosome 11 and 5 STR loci on chromosome 19 in Chinese Hans. METHODS: Polymerase chain reaction-single strand length polymorphism(PCR-SSLP) was used to genotype 100 randomly selected individuals of the Han nationality at 8 STR loci(D11S1984, D11S1999, D11S1392, D11S1985, D11S2002, D11S1986, D11S4464 and D11S2359) on chromosome 11 and 5 STR loci(D19S247, D19S714, D19S433, D19S246, D19S254) on chromosome 19. RESULTS: Eight alleles and 26 genotypes, 9 alleles and 15 genotypes, 6 alleles and 16 genotypes, 12 alleles and 40 genotypes, 6 alleles and 19 genotypes, 12 alleles and 48 genotypes, 8 alleles and 20 genotypes, 7 alleles and 13 genotypes were observed at D11S1984, D11S1999, D11S1392, D11S1985, D11S2002, D11S1986, D11S4464 and D11S2359. The heterozygosities for the 8 STR loci were 87%, 68%, 73%, 92%, 71%, 86%, 75% and 71%, respectively. Ten alleles and 19 genotypes, 10 alleles and 26 genotypes, 10 alleles and 24 genotypes, 11 alleles and 29 genotypes, 8 alleles and 18 genotypes were observed at D19S247, D19S714, D19S433, D19S246, D19S254. The heterozygosities for the 5 STR loci were 63%, 82% 72%, 81% 74%, respectively. CONCLUSION: The distribution of allele frequencies of 8 STR loci on chromosome 11 and 5 STR loci on chromosome 19 was consistent with the Hardy-Weinberg equilibrium and the highly genetic polymorphism was observed in Chinese Han population.

China↗

[Mechanisms of human cell protection associated with genetic polymorphism].

Systems ensuring protection of human cells against endogenous and exogenous mutagenic factors are considered in terms of genetic polymorphism. Some protection mechanisms are described, including those connected with capturing free radicals, biotransformation of xenobiotics, excision repair of DNA damage (excision of nitrous bases, nucleotides, mismatch repair). A special section is devoted to some issues of using antimutagens in context of genetic polymorphism. The problem of adaptive response is discussed, providing evidence for independence (in some cases) of DNA repair systems and the formation of adaptive response. Some results of the author obtained many years ago but still relevant are presented.

DNA Damage↗

[A study on the construction of allelic ladders for 4 short tandem repeat loci (D7S817, D10S1432, D10S1213 and D18S865) and their genetic polymorphism in two Chinese populations].

OBJECTIVE: To produce standard allelic ladders for four STR loci(D7S817, D10S1432, D10S1213 and D18S865) by recombined plasmids and use them in the research of genetic polymorphism. METHODS: After being amplified by PCR, different STR allelic fragments were isolated from the polyacryramide gel. The STR allelic fragments were eluted into distilled water and reamplified by PCR to obtain purified allelic fragments. Next, the purified allelic fragments were subcloned individually into the PUC plasmid vectors, and the size and structure of the inserts were confirmed by the analysis of their DNA sequences. Then we transfected the PUC plasmid vectors into E. coli DH5 alpha cells, worked on selective culture, and finally, mixed the alleles of the four STR loci respectively. RESULTS: The standard allelic ladders for four new loci (D7S817, D10S1432, D10S1213 and D18S865) were obtained, with which the genetic polymorphisms of four new loci in Chinese Hans and Dongxiang ethnic groups were studied. CONCLUSION: The standard STR allelic ladders acquired by this method are of high value in forensic practice, and they are applicable to the analysis of genetic polymorphism.

Alleles↗

Yeast communities and genetic polymorphism of Saccharomyces cerevisiae strains associated with artisanal fermentation in Brazil.

Yeast communities and genetic polymorphism of prevalent Saccharomyces cerevisiae strains isolated from the spontaneous fermentation of the sugarcane juice during the production of aguardente in three distilleries in the state of Minas Gerais, Brazil, were studied. S. cerevisiae was the prevalent species during the process of aguardente production, but Schizosaccharomyces pombe was predominant in old fermentations in one distillery. Transient yeast species were found in a variable number, probably due to the daily addition of sugarcane juice, and they were different for each of the three distilleries studied. PFGE and PCR analysis of the predominant strains of S. cerevisiae isolated from the fermented must showed a high degree of genetic polymorphism among the three distilleries. A high molecular variability of S. cerevisae strains was also observed among strains isolated from the same vat at different fermentation ages. Our results showed that there was a succession of geneticly different strains of S. cerevisae during the process of aguardente production.

Alcoholic Beverages↗

Influence of genetic polymorphisms of the renin-angiotensin system on IgA nephropathy.

BACKGROUND: We evaluated the impact of the three major genetic polymorphisms of the renin-angiotensin system [angiotensinogen (AGT) gene M235T, angiotensin-converting enzyme (ACE) gene-I/D and angiotensin II-type 1 receptor (AT1R) gene A1166C polymorphisms] as risk factors in IgA nephropathy. METHODS: The clinical course of 107 patients with biopsy proven IgA nephropathy followed up for 6.6 +/- 5.8 years was examined. The genetic polymorphisms were determined by PCR amplification. RESULTS: The allele frequencies of the polymorphisms studied were similar in patients and control subjects. AGT-M235T genotype was associated with the presence of nephrotic syndrome (p < 0.05), correlated to the number of antihypertensive drugs agents taken (p < 0.01) and influenced the rate of deterioration of renal function (p < 0.05). Combined analysis of AGT-M235T and ACE-I/D polymorphisms detected an interaction on affecting progression (p < 0.05). ACE-inhibition had a more pronounced effect in certain AGT-M235T and ACE-I/D genotypes (p < 0.05) and their combined analysis showed a synergistic effect (p < 0.01). No association between AT(1)R-A1166C polymorphism and any of the parameters studied was observed. CONCLUSIONS: Our results suggest that angiotensinogen-M235T polymorphism is an important marker of progression in IgA nephropathy in Caucasian patients, especially when analyzed in combination with ACE-I/D polymorphism.

Female↗

[Study on the relations between genetic polymorphisms in methylenetetrahydrofolate reductase, methionine synthase and the risk of pancreatic cancer].

OBJECTIVE: To determine whether genetic polymorphisms in methylenetetrahydrofolate reductase (MTHFR C677T and A1298C), methionine synthase (MS A2756G) were associated with the risks of pancreatic cancer. METHODS: A hospital-based, case-control study consisting of 101 incident pancreatic cancer cases and 337 controls matched on age, sex and race was conducted to investigate the association between polymorphism in MTHFR and MS, and susceptibility to pancreatic cancer. Genotypes of MTHFR C677T, A1298C and MS A2756G were analyzed by polymerase chain reasction-restriction fragment length polymorphism methods. RESULTS: It was found that multivariate-adjusted odds ratio (ORs; 95% confidence interval) for MTHFR-677CT and 677TT compared with 677CC were 2.17 (1.26 - 3.85) and 3.53 (1.85 - 6.84) respectively, which was in a manner of allele-dose relationship. However, no significant association between the A1298C genotype alone and the risk of cancer was observed which seemed that this polymorphism had a combined effect with the C677T polymorphism. A significant gene-environment interaction was observed between C677T polymorphism and cigarette smoking or alcohol intake. Subjects with variant genotypes who smoked > 17 pack-years had highest risk for developing the cancer, with the OR of 5.58 (2.53 - 12.30). Similarly, the OR (3.27, 1.51 - 7.23) for subjects with variant genotypes of alcohol drinker was significantly higher than that for subjects either having the variant genotype or being drinkers. No association was found between MS A2756G polymorphism and risk of pancreatic cancer in the study. CONCLUSION: These findings supported the hypothesis that genetic polymorphisms in MTHFR C677T might contribute to the risk of developing pancreatic cancer.

5-Methyltetrahydrofolate-Homocysteine S-Methyltran↗

Genetic polymorphism in CYP17 and breast cancer risk in Japanese women.

A case-control study was conducted to investigate the association of two genetic polymorphisms (1931T/C and 1951G/A) in the promoter region of the CYP17 gene with breast cancer risk in Japanese women. No significant association was observed between CYP17 polymorphism(1951G/A) and breast cancer risk (odds ratio (OR) = 1.71, 95% confidence interval (CI): 0.28-1.84). In contrast, a significant increase in breast cancer risk (OR= 1.82. 95% CI: 1.07-3.12) was observed in CYP17(1931C/C) homozygotes compared with CYP17(1931T/C) heterozygotes and CYP17(1931T/T) homozygotes when women aged > or = 55 years were considered, but such a significant increase was not observed when women aged < or = 54 years were considered (OR = 0.96, 95% CI: 0.56-1.63). These results suggest that CYP17 polymorphism(1931T/C) would be useful in the selection of Japanese women at a high risk for developing breast cancer at the age of > or = 55 years.

Adult↗

Genetic polymorphisms in the transforming growth factor beta-induced gene associated with BMI.

In an effort to identify genetic polymorphisms in potential candidate genes for type 2 diabetes mellitus (T2DM), we have sequenced the transforming growth factor beta-induced gene (TGFBI), and examined the association with T2DM and diabetic phenotypes in a Korean T2DM study (775 T2DM patients and 316 normal controls). Twenty-eight polymorphisms were identified in TGFBI. Although no significant associations were detected with the risk of T2DM, one SNP in intron 16 (c.2011+137C>T) and one SNP in the 3' untranslated region (UTR) (c.2589T>G), showed significant association with the levels of insulin and body mass index (BMI) among nondiabetic controls. The lower insulin and BMI were observed in individuals who carry one or two copies of minor alleles than others. For example, the highest BMI (24.21 kg/m(2)) in individuals with homozygote major alleles (T) of c.2589T>G (n=99), the intermediate BMI (23.68 kg/m(2)) in individuals with heterozygote alleles (n=156), and the lowest BMI (22.69 kg/m(2)) in individuals with homozygote minor alleles (G) (n=57, P=0.005) were observed. The present study provides, for the first time, information about genetic polymorphisms in TGFBI and positive associations of those polymorphisms with levels of insulin and BMI in the Korean population.

3' Untranslated Regions↗

Genetic polymorphisms in Parkinson disease subjects with and without hallucinations: an analysis of the cholecystokinin system.

BACKGROUND: Hallucinations in patients with Parkinson disease (PD), occurring in about one third of those receiving long-term dopaminergic therapy, contribute to morbidity and mortality. In matched Chinese PD subjects with and without hallucinations, the presence of the -45 C/T locus in the cholecystokinin (CCK) gene, particularly when combined with the CCK receptor, CCKAR (cholecystokinin A receptor), C polymorphism, was associated with increased hallucination risk. Because CCK gene polymorphisms vary across ethnic groups, the presence of similar associations in white PD subjects merits investigation. OBJECTIVE: To determine whether polymorphisms of CCK and CCK receptor genes are associated with hallucinations in white PD subjects. DESIGN: Case-control study of PD subjects with and without chronic hallucinations matched for age and dopaminergic medication. Genomic DNA was analyzed for CCK, CCKAR, and CCKBR (cholecystokinin B receptor) polymorphisms by polymerase chain reaction. Genotype distributions and allele frequencies were compared between groups and in matched pairs. RESULTS: Comparing matched pairs, we found more frequent representation of the CCK T allele in hallucinating PD subjects, although this finding was not statistically significant (P =.06). Of 5 cases with both CCK T and CCKAR C alleles, 4 were hallucinators. Cases and controls did not differ in CCKAR or CCKBR polymorphisms. CONCLUSIONS: Our study supports a previous association of hallucinations in PD subjects with the CCK T allele and the combined CCK T and CCKAR C allele, suggesting that the CCK system may influence the development of hallucinations in PD subjects. The lower representation of the T allele in our white sample limited our statistical power. Further assessment of the T allele as a risk factor for hallucinations would include longitudinal study of nonhallucinators to detect the evolution of hallucinations relative to T allele frequency.

Aged↗

5,10 Methylenetetrahydrofolate reductase genetic polymorphism as a risk factor for neural tube defects.

Persons with a thermolabile form of the enzyme 5,10 methylenetetrahydrofolate reductase (MTHFR) have reduced enzyme activity and increased plasma homocysteine which can be lowered by supplemental folic acid. Thermolability of the enzyme has recently been shown to be caused by a common mutation (677C-->T) in the MTHFR gene. We studied 41 fibroblast cultures from NTD-affected fetuses and compared their genotypes with those of 109 blood specimens from individuals in the general population. 677C-->T homozygosity was associated with a 7.2 fold increased risk for NTDs (95% confidence interval: 1.8-30.3; p value: 0.001). These preliminary data suggest that the 677C-->T polymorphism of the MTHFR gene is a risk factor for spina bifida and anencephaly that may provide a partial biologic explanation for why folic acid prevents these types of NTD.

5,10-Methylenetetrahydrofolate Reductase (FADH2)↗

Breast cancer risk, meat consumption and N-acetyltransferase (NAT2) genetic polymorphisms.

Although inconsistencies exist, some studies have shown that meat consumption is associated with breast cancer risk. Several heterocyclic amines (HAs), formed in the cooking of meats, are mammary carcinogens in laboratory models. HAs are activated by polymorphic N-acetyltransferase (NAT2) and rapid NAT2 activity may increase risk associated with HAs. We investigated whether ingestion of meat, chicken and fish, as well as particular concentrated sources of HAs, was associated with breast cancer risk, and if NAT2 genotype modified risk. Caucasian women with incident breast cancer (n = 740) and community controls (n = 810) were interviewed and administered a food frequency questionnaire. A subset of these women (n = 793) provided a blood sample. Polymerase chain reaction and restriction fragment length polymorphism analyses were used to determine NAT2 genotype. Consumption of red meats, as well as an index of concentrated sources of HAs, was not associated with increased breast cancer risk, nor did risk vary by NAT2 genotype. In post-menopausal women, higher fish consumption was inversely associated with risk (odds ratio = 0.7; 95% confidence interval, 0.4-1.0); among pre-menopausal women, there was the suggestion of inverse associations between risk and pork and chicken intake. Our results suggest that consumption of meats and other concentrated sources of HAs is not associated with increased breast cancer risk. However, due to the strong biologic plausibility for a role of some HAs in mammary carcinogenesis, and the likely measurement error in evaluation of sources of HAs in this study, further studies of these possible relationships are warranted.

Amines↗

Apolipoprotein E genetic polymorphism, serum lipoproteins, and breast cancer risk.

Apolipoprotein E (apoE) is a polymorphic gene involved in lipid metabolism with three common variant alleles (epsilon2, epsilon3, and epsilon4). The epsilon4 allele has been associated with elevated levels of cholesterol as well as greater risk of coronary heart disease and Alzheimer's disease. In this case-control study we examined whether apoE genotype affected the association between serum lipids and breast cancer risk. In a subset of a study in western New York, 260 women with incident, primary breast cancer and 332 community controls were interviewed and provided blood samples. Polymerase chain reaction-restriction fragment length polymorphism analyses of the apoE polymorphism were performed. Participants were classified as apoE2 (epsilon2, epsilon2 or epsilon2, epsilon3), apoE3 (epsilon3, epsilon3), or apoE4 (epsilon4, epsilon4 or epsilon4, epsilon3). No unconditional logistic regression was used to compute adjusted odds ratios (ORs) and 95% confidence intervals (CI). Compared with women with the apoE3 genotype, there were no associations with risk for women with the apoE2 (OR=1.0; 95% CI=0. 91-1.64) or apoE4 genotype (OR=0.97; 95% CI=0.63-1.54). Higher serum levels of total cholesterol, HDL cholesterol, and LDL cholesterol were not associated with risk, either in the total sample or among subgroups of women defined by apoE genotype. Women with the highest serum triglyceride levels had an increase in risk (OR=1.63; 95% CI=1. 03-2.59) compared to women with the lowest levels. This effect was not apparent among women with the apoE2 or apoE3 genotype, but much stronger among women with the apoE4 genotype (OR=4.69; 95% CI=1. 49-14.7). These data suggest that the apoE4 genotype may modify the association between serum triglycerides and breast cancer risk.

Aged↗