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Different frequency of gene targeting events by the RNA-DNA oligonucleotide among epithelial cells.

A unique hybrid oligonucleotide composed of both RNA and DNA has been shown to correct a point mutation in a site-specific and inheritable manner in extrachromosomal and chromosomal targets. In order to develop new gene therapeutics for skin, we tested two oligonucleotides that were shown to create a point mutation in alkaline phosphatase and beta-globin genes in several epithelial cell types. Highly transformed epithelial cells (HeLa) exhibited a conversion frequency of 5% by both RNA-DNA oligonucleotides. In comparison, other immortalized epithelial cells (HaCaT) or human primary keratinocytes did not show any detectable level of gene conversion by the restriction fragment length polymorphism analysis, indicating less than 1% conversion frequency. The concentration of the oligonucleotide in the nuclei of HeLa cells was similar to that of HaCaT or human primary keratinocytes measured by a radiolabeled or a fluorescein-conjugated oligonucleotide. Moreover, the RNA-DNA oligonucleotide exhibited a prolonged stability in the nucleus. Thus, neither uptake nor nuclear stability of the oligonucleotide appears to be a limiting factor in gene targeting events under our experimental conditions. These results indicate that the frequency of gene targeting varies among different cells, suggesting that cellular recombination and DNA repair activities may be important.

Alkaline Phosphatase↗

Gene conversion of deletions in the his4 region of yeast.

A selection procedure has been devised which allows the recovery of deletions of the his4 region of Saccharomyces cerevisiae. Many deletions were obtained by this procedure and were characterized genetically and biochemically. These deletions permit the construction of a linear map of the his4A and his4B region. A deletion which was large on this genetic map reduced the size of the his4 gene product. Tetrad analyses revealed that deletions can affect the conversion frequency of other alleles at his4. Analysis of reciprocal recombination in conversion tetrads showed that the order of genes on chromosome III is: centromere-leu2-his4A-his4C. This means that in his4 transcription and translation proceed away from the centromere.

Chromosome Mapping↗

Biased gene conversion, copy number, and apparent mutation rate differences within chloroplast and bacterial genomes.

We investigate the possibility that differences between synonymous substitution rates of organelle and bacterial genes differing only in copy number may be due to conversion bias. We find that the rather large observed difference in the synonymous rates between genes in the single copy and inverted-repeat regions of chloroplasts can be accounted for by a very small bias against new mutants. More generally, differences in the within-organelle fixation probability result in different apparent mutation rates as measured by the expected rate of appearance of cells homoplasmic for new mutants. Thus, differences in intracellular population parameters rather than molecular mechanisms can account for some variation in the apparent mutation rates of organelle genes, and possibly in other systems with variable numbers of gene copies. On the other hand, our analysis suggests that conversion bias is not a likely explanation for relatively low mutation rates observed near the replication origin of bacterial chromosomes.

Chloroplasts↗

Targeted disruption of the 25-hydroxyvitamin D3 1alpha-hydroxylase gene in ras-transformed keratinocytes demonstrates that locally produced 1alpha,25-dihydroxyvitamin D3 suppresses growth and induces differentiation in an autocrine fashion.

It has been previously shown that keratinocytes express a high level of 25-hydroxyvitamin D(3) (25-OHD(3)) 1alpha-hydroxylase (1alpha-hydroxylase). 1alpha-Hydroxylase catalyzes the conversion of 25-OHD(3) to 1alpha,25-dihydroxyvitamin D(3) [1,25(OH)(2)D(3)]. 1,25(OH)(2)D(3) is both antiproliferative (i.e., suppresses cell growth) and prodifferentiative (i.e., induces cell differentiation) in many cell types. We hypothesized that local production of 1,25(OH)(2)D(3) by keratinocytes may suppress their growth and induce their differentiation in an autocrine fashion. To test this hypothesis, we inactivated both 1alpha-hydroxylase alleles in a ras-transformed keratinocyte cell line, HPK1Aras, which typically produces squamous carcinoma in nude mice. To inactivate 1alpha-hydroxylase expression by HPK1Aras cells, we disrupted both alleles of the 1alpha-hydroxylase gene by homologous recombination. Lack of expression and activity of 1alpha-hydroxylase was confirmed by Northern blot analysis and detected conversion of 25-OHD(3) to 1,25(OH)(2)D(3). We then examined the effect of substrate 25-OHD(3) on parameters of growth and differentiation in the double knockout cell line as compared to wild-type HPK1Aras cells in vitro. It was found that 1alpha-hydroxylase inactivation blocked the antiproliferative and prodifferentiative effect of 25-OHD(3). These in vitro effects were further analyzed in vivo by injecting knockout or control cells subcutaneously in severely compromised immunodeficient mice. Tumor growth was accelerated and differentiation was inhibited in mice given injections of knockout cells as compared to control cells in the presence of substrate 25-OHD(3). Our results demonstrate, for the first time, that 1alpha-hydroxylase expression by keratinocytes plays an important role in autocrine growth and differentiation of these cells, and suggest that expression of this enzyme may modulate tumor growth in squamous carcinomas.

25-Hydroxyvitamin D3 1-alpha-Hydroxylase↗

Influence of silicone (PDMS) surface texture on human skin fibroblast proliferation as determined by cell cycle analysis.

In vivo biocompatibility of soft-tissue implants is often hampered by development of capsules that eventually might contract and impair implant function. It has been shown that capsule formation can be significantly reduced by using materials with textured surface elements in the micron range. In this study the interaction of human fibroblasts with silicone surfaces was analyzed using cell cycle analysis. Silicone was textured with 2, 5, and 10 microns wide grooves (2MU, 5MU, 10MU, respectively) or kept smooth (SMT). Cell cycle analysis was performed after staining of cells with propidium iodide. Cells proliferated on the fibronectin-preadsorbed silicone, as demonstrated by increased coverage and occurrence of subpopulations in the S and G2/M phase of the cell cycle. Cells on SMT went faster into the S phase than cells on textured silicones. Cells on 10MU showed less proliferation than cells on 2MU and 5MU. Besides the basic percentages of cells in the different cycle phases, DNA profiles were also influenced by incubation time and texture, especially with respect to the presence of hypodiploid populations and asymmetry of the G0/G1 peak. Finally scatter characteristics were influenced. 3-(4,5-dimethylthiazole-2-yl)-2,5-diphenyl tetrazolium bromide (MTT) assay data did not reveal significant differences among the different samples. Fibronectin preadsorption of silicone only resulted in slightly higher MTT conversion. Cell cycle analysis proved to be a sensitive screening method for proliferation on the silicone surfaces and provided information beyond the normal G0/G1, S and G2/M subpopulations.

Biocompatible Materials↗

An optimized algorithm for flux estimation from isotopomer distribution in glucose metabolites.

MOTIVATION: Analysis of the conversion of (13)C glucose within the metabolic network allows the evaluation of the biochemical fluxes in interconnecting metabolic pathways. Such analyses require solving hundreds of equations with respect to individual isotopomer concentrations, and this assumes applying special software even for constructing the equations. The algorithm, proposed by others could be improved. METHOD: A C-code linked to the program written in Mathematica (Wolfram Research Inc.), constructs and solves differential equations for all isotopomer concentrations, using the general enzyme characteristics (K(m), equilibrium constant, etc.). This code uses innovative algorithm of determination for the isotopomers-products, thus essentially decreasing the computation time. Feasible metabolic fluxes are provided by the parameters of enzyme kinetics found from the data fitting. RESULTS: The software effectively evaluates metabolic fluxes based on the measured isotopomer distribution, as was illustrated by the analysis of glycolysis and pentose phosphate cycle. The mechanism of transketolase and transaldolase catalysis was shown to induce a specific kind of isotopomer re-distribution, which, despite the significance of its effect, usually is not taken into account. AVAILABILITY: The software could be freely downloaded from the site: http://bq.ub.es/bioqint/label_distribution/.

Algorithms↗

Estimation of the interindividual variability in the one-compartment pharmacokinetic model for methylmercury: implications for the derivation of a reference dose.

A critical step in the U.S. EPA's derivation of an Reference Dose (RfD) for methylmercury is conversion of the maternal hair Hg concentration of 11 ppm to average daily intake using the one-compartment pharmacokinetic model. A default uncertainty factor (UF) adjustment of 3 for interindividual variability was then applied to this conversion. A probabilistic (Monte Carlo) analysis is presented estimating the interindividual variability inherent in this dose conversion for women 18-40 years old based on data in the scientific literature. The dose of 1.1 micrograms/kg/day, calculated by the U.S. EPA to correspond to 11 ppm Hg in hair, is estimated in this analysis to be larger than 94-99% of corresponding doses. The application of a UF of 3 to this U.S. EPA value gives a dose which is estimated to be larger than 28-73% of corresponding doses. This analysis suggests that if the dose conversion in the RfD is intended to be inclusive of 95-99% of women 18-40, the daily intake should be set at 0.1-0.3 microgram/kg/day. The RfD of 0.03-0.1 microgram/kg/day, derived from this dose by the U.S. EPA's application of an additional UF of 3 for additional toxicologic concerns, is somewhat smaller than the current RfD of 0.1 microgram/kg/day.

Absorption↗

All-inside repair is an effective treatment for medial meniscus posterior root tears: a systematic review and meta-analysis of biomechanical and clinical evidence.

BACKGROUND: Medial meniscus posterior root tears (MMPRTs) reproduce the biomechanics of subtotal meniscectomy. Repair is favored, but the role of all-inside repair (AR) remains unclear relative to transtibial pull-out (TP). This study aimed to review the biomechanical and clinical evidence on AR for MMPRTs. METHODS: A systematic review was conducted according to the Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) guidelines and registered in the International Prospective Register of Systematic Reviews (PROSPERO). MEDLINE, Embase, Scopus, and the Cochrane Central Register of Controlled Trials (CENTRAL) were searched. Outcomes included patient-reported outcome measures (PROMs), magnetic resonance imaging (MRI), and biomechanical performance. When available, random-effects meta-analysis was performed. RESULTS: Thirteen studies were included. AR restored contact mechanics and showed load to failure comparable to TP, with lower stiffness. Meta-analysis showed lower conversion to total knee arthroplasty with AR versus non-repair (RR 0.18, 95% CI 0.05-0.58), and no significant PROM differences between AR and TP. CONCLUSIONS: AR showed favorable biomechanical properties and improved outcomes versus non-repair. Compared with TP, no significant clinical differences were observed. AR may represent a reasonable option in selected scenarios.

Humans↗

Whole Genome Methylation Sequencing via Enzymatic Conversion (EM-seq): Protocol, Data Processing, and Analysis.

Whole genome bisulfite sequencing (WGBS) has been the gold standard technique for base resolution analysis of DNA methylation for the last 15 years. It has been, however, associated with technical biases, which lead to overall overestimation of global and regional methylation values, and significant artifacts in extreme cytosine-rich DNA sequence contexts. Enzymatic conversion of cytosine is the newest approach, set to replace entirely the use of the damaging bisulfite conversion of DNA. The EM-seq technique utilizes TET2, T4-BGT, and APOBEC in a two-step conversion process, where the modified cytosines are first protected by oxidation and glucosylation, followed by deamination of all unmodified cytosines to uracil. As a result, EM-seq is degradation-free and bias-free, requires low DNA input, and produces high library yields with longer reads, little batch variation, less duplication, uniform genomic coverage, accurate methylation over a larger number of captured CpGs, and no sequence-specific artifacts.

DNA Methylation↗

Advice-giving styles by finnish nurses in dietary counseling concerning type 2 diabetes care.

Dietary advice-giving is an important part of dietary counseling in diabetes care and prevention. The strategies of advice-giving, however, have not been explicated and the qualitative characteristics of conversations in diabetes counseling have remained mainly unstudied. This article describes the styles in which nurses responsible for diabetes counseling in Finnish primary care practices offer dietary advice for patients with recently diagnosed type 2 diabetes or impaired glucose tolerance. The data consisted of 55 videotaped naturally occurring counseling sessions between 18 patients and five nurses and were analyzed using typology as an analyzing method. Four different styles of dietary advice-giving were recognized from the speech episodes concerning dietary behavior: recommending, persuasive, supportive, and permitting styles. Recommending style of advice-giving is recognized to be the dominant style that has arisen from the data and, actually, it seems to be the starting point in advice-giving practices. The other styles were used rarely, which suggest that the nurses rely upon quite a narrow selection of communication strategies that helps them to control the topics and the situation, although patient-centered counseling is strongly demanded nowadays. On the basis of our results we suggest that health professionals may need to become more aware of their advice-giving practices in routine situations through conscious effort of self-evaluation. A more detailed analysis of interpersonal conversations during counseling sessions is also needed as it may offer valuable information to promote patients' self-management skills by facilitating observation of conversational elements recognized to be successful in diabetes counseling.

Counseling↗

The functionally active IE2 immediate-early regulatory protein of human cytomegalovirus is an 80-kilodalton polypeptide that contains two distinct activator domains and a duplicated nuclear localization signal.

The IE2 region of the human cytomegalovirus (CMV) strain Towne major immediate-early (MIE) gene encodes a transcriptional transactivator that stimulates expression from a variety of heterologous target promoters but specifically down-regulates its own promoter. By immunofluorescence and Western immunoblot analysis with monospecific peptide antisera, we found that human CMV MIE exon 5 encodes four overlapping polypeptides, two present at immediate-early times (80 and 55 kDa) and two others detected only at late times after infection (55 and 40 kDa). However, only the 80-kDa version (579 amino acids), which is derived from the small upstream exons 2 and 3 fused to the intact exon 5 region, was functionally active in both transactivation and autoregulation as assessed by cotransfection experiments. These results confirm the corrected assignment of the coding capacity of the exon 5 region based on amino acid homology with the equivalent IE2 protein from simian CMV (Colburn). In transient DNA transfection assays, IE2 expression plasmids also produced a predominant full-length 80-kDa protein, which was localized in a distinctive reticular pattern in the nucleus. Two short basic nuclear localization signals in IE2 were identified by deletion analysis and by conversion of a test cytoplasmic herpes simplex virus protein into a form that localized in the nucleus after insertion of either of these two human CMV motifs. Functional assays with MIE region plasmids containing deletions or truncations in exon 5 revealed that both transactivation and autoregulation required several distinct domains within the COOH half of the IE2 protein, whereas a region between codons 99 and 194 could be discarded. Three segments at the NH2 end of the protein between codons 1 to 85, 86 to 98, and 195 to 290 were also essential for transactivation but played no role in autoregulation. Finally, in domain swap experiments, GAL4-fusion proteins containing either an NH2-terminal 51-amino-acid domain from exon 3 (codons 25 to 85) or the COOH-terminal 33-amino-acid domain from exon 5 (codons 544 to 579) identified two distinct activator domains from IE2, both of which have acidic characteristics.

Amino Acid Sequence↗

Oral streptococcal glyceraldehyde-3-phosphate dehydrogenase mediates interaction with Porphyromonas gingivalis fimbriae.

Interaction of Porphyromonas gingivalis with plaque-forming bacteria is necessary for its colonization in periodontal pockets. Participation of Streptococcus oralis glyceraldehyde-3-phosphate dehydrogenase (GAPDH) and P. gingivalis fimbriae in this interaction has been reported. In this investigation, the contribution of various oral streptococcal GAPDHs to interaction with P. gingivalis fimbriae was examined. Streptococcal cell surface GAPDH activity was measured by incubation of a constant number of streptococci with glyceraldehyde-3-phosphate and analysis for the conversion of NAD+ to NADH based on the absorbance at 340 nm. Coaggregation activity was measured by a turbidimetric assay. Cell surface GAPDH activity was correlated with coaggregation activity (r = 0.854, P < 0.01) with Spearman's rank correlation coefficient. S. oralis ATCC 9811 and ATCC 10557, Streptococcus gordonii G9B, Streptococcus sanguinis ATCC 10556, and Streptococcus parasanguinis ATCC 15909 exhibited high cell surface GAPDH activity and coaggregation activity; consequently, their cell surface GAPDHs were extracted with mutanolysin and purified on a Cibacron Blue Sepharose column. Subsequently, their DNA sequences were elucidated. Purified GAPDHs bound P. gingivalis recombinant fimbrillin by Western blot assay, furthermore, their DNA sequences displayed a high degree of homology with one another. Moreover, S. oralis recombinant GAPDH inhibited coaggregation between P. gingivalis and the aforementioned five streptococcal strains in a dose-dependent manner. These results suggest that GAPDHs of various plaque-forming streptococci may be involved in their attachment to P. gingivalis fimbriae and that they may contribute to P. gingivalis colonization.

Amino Acid Sequence↗

Cumulative incidence of converting from clinically unilateral to bilateral exfoliation syndrome.

PURPOSE: To obtain long-term cumulative incidence estimates of time to conversion of clinically unilateral to bilateral exfoliation syndrome (ES). METHODS: A retrospective, longitudinal cohort study of 35 patients with clinically unilateral ES from the private office of one author. Diagnosis of ES was made between 1968 and 1998. On return visits a careful search for ES in the nonexfoliative fellow eye was made by the same author in a semidark room using a slit lamp and maximal pupillary dilatation. Cumulative incidence of converting to bilateral ES was calculated, taking death into account as a competing risk. RESULTS: Cumulative incidence of conversion to bilateral ES was 0.11 (95% CI, 0.03-0.25) at 5 years, 0.36 (95% CI, 0.15-0.57) at 10 years, and 0.52 (95% CI, 0.27-0.93) at 15 years when the day of examination was taken to be the day of conversion, and 0.14 (95% CI, 0.04-0.29) at 5 years and 0.52 (95% CI, 0.26-0.73) at 10 years when analysis was based on conversion taking place at the midpoint between the last two visits. The median age at conversion was 72 years (range, 66-86), and the median age of patients remaining clinically unilateral was 77 years (range, 57-90). Factors associated with time to conversion depended on the strategy of the analysis and included higher age at first visit and larger IOP difference between the involved and uninvolved eye. CONCLUSION: A large proportion of patients with clinically unilateral ES will not convert to bilateral involvement in long-term follow-up. Immunohistochemical studies suggest that local factors must either expedite ES or slow it down in one eye to explain the frequently longstanding asymmetric involvement, and a difference in initial aqueous outflow facility might be examined as one candidate.

Age Distribution↗

Polymorphism of the glutathione transferase subunit 3 in Sprague-Dawley rats involves a reactive cysteine residue.

Comparison of Hirosaki hairless rat (HHR) and Sprague-Dawley (SD) rat liver glutathione transferase (GST) subunits by HPLC revealed differences in subunit 3; a new peak was detected in HHR GSTs and this was tentatively named X. By chromatofocusing, the HHR GST form composed of peak X and SD rat GST 3-3 were eluted at pH 8.8 and 9.1 respectively. The former was more sensitive to the SH reagent N-ethylmaleimide (NEM) than the latter. GSSG treatment of peak X resulted in a shift of retention time (peak Y) by HPLC analysis. However, such conversion was not observed for the SD rat GST 3-3 following GSSG or dithiothreitol (DTT) treatment. Peak Y exhibited m/z values of 26091.9 and 26125.4 by matrix-assisted laser-desorption ionization-time-of-flight MS, higher than those of peak X by 304-307, equivalent to the molecular-mass value of GSH. On treatment with DTT, peak Y was converted into peak X, with release of a substance with HPLC-characteristics of GSH. This substance was confirmed to be GSH by liquid chromatography/MS. These results thus indicated peak Y to be a glutathionylated form of peak X. Quantification revealed the release of 4 nmol of GSH from 0.12 mg of the peak Y protein, corresponding to 4.8 nmol (M(r) 25000). The nucleotide sequence of HHR GST subunit 3 cDNA proved identical to that reported for pGTA/C44, possessing asparagine and cysteine as the 198th and 199th amino acid residues, respectively, corresponding to lysine and serine in subunit 3 of the SD rat. Thus peak X appeared to be the product of HHR GST subunit 3 cDNA. Treatment with N-(4-dimethylamino-3,5-dinitrophenyl)maleimide, a coloured analogue of NEM, followed by trypsin-treatment and sequencing of labelled peptides, identified the reactive cysteine residue of HHR GST subunit 3 to be located at position 199. Unlike SD rat GST 3-3, HHR GST 3-3 was not activated by treatment with xanthine and xanthine oxidase. These results suggest polymorphism of the rat GST subunit 3 gene with individual gene product variation in sensitivity to oxidative stress.

Animals↗

Minisatellite variants generated in yeast meiosis involve DNA removal during gene conversion.

Two yeast minisatellite alleles were cloned and inserted into a genetically defined interval in Saccharomyces cerevisiae. Analysis of flanking markers in combination with sequencing allowed the determination of the meiotic events that produced minisatellites with altered lengths. Tetrad analysis revealed that gene conversions, deletions, or complex combinations of both were involved in producing minisatellite variants. Similar changes were obtained following selection for nearby gene conversions or crossovers among random spores. The largest class of events involving the minisatellite was a 3:1 segregation of parental-size alleles, a class that would have been missed in all previous studies of minisatellites. Comparison of the sequences of the parental and novel alleles revealed that DNA must have been removed from the recipient array while a newly synthesized copy of donor array sequences was inserted. The length of inserted sequences did not appear to be constrained by the length of DNA that was removed. In cases where one or both sides of the insertion could be determined, the insertion endpoints were consistent with the suggestion that the event was mediated by alignment of homologous stretches of donor/recipient DNA.

Alleles↗

Quantitative HPLC analysis of the level of fecapentaenes and their precursors in human feces by a chemical conversion method.

A fast and reliable hplc method for the quantitative analysis of total fecapentaene-12 (FP-12 and its precursors) and total fecapentaene-14 (FP-14 and its precursors) in human feces is described. The analysis is based on the rapid chemical conversion of fecapentaenes and their precursors to more stable methoxytetraenols and the use of synthetic, not naturally occurring, fecapentaene-13 (FP-13) as an internal standard. The synthesis and physical properties of this internal standard are described. The convenience and reproducibility of the method were illustrated by applying the procedure to stool samples obtained from twelve individuals on 3 consecutive days. Levels of total FP's were in the range of 0.1-25.4 micrograms for total FP-12 and 0.1-8.5 micrograms for total FP-14 per g of wet feces. Appreciable fluctuations were observed between levels in samples from the same individual on different days. Reproducibility and recovery were shown to be good.

Adult↗

Nipple-sparing mastectomy: technique and results of 54 procedures.

HYPOTHESIS: The rationale for removal of the nipple-areolar complex (NAC) during total mastectomy centers on long-standing concerns about possible neoplastic involvement of the NAC and its postoperative viability. Nipple-sparing mastectomy (NSM) combines a skin-sparing mastectomy with preservation of the NAC, intraoperative pathological assessment of the nipple tissue core, and immediate reconstruction, thereby permitting better cosmesis for patients undergoing total mastectomy. Neoplastic involvement of the NAC can be predicted before surgery and assessed during the operation, and sustained postoperative viability of the NAC is likely with appropriate surgical technique. RESULTS: Fifty-four NSMs with immediate reconstruction were attempted among 44 patients. Six NAC core specimens revealed neoplastic involvement on frozen section analysis, resulting in conversion to total mastectomies. Forty-five of the 48 completed NSMs maintained postoperative viability of the NAC; 3 NACs had partial loss. CONCLUSION: Nipple-sparing mastectomy is a reasonable option for carefully screened patients.

Adult↗

Excessive function of peripheral blood neutrophils from patients with Behçet's disease and from HLA-B51 transgenic mice.

OBJECTIVE: To elucidate the role played by HLA-B51 in the neutrophil hyperfunction of Behçet's disease, we determined the superoxide production by purified peripheral blood neutrophils from Behçet's disease patients, from HLA-B51 positive healthy individuals, and from HLA-B51 transgenic mice. METHODS: Neutrophil function was evaluated by flow cytometric analysis, detecting the conversion of 2',7'-dichlorofluorescin diacetate into dichloroflurescein, induced by superoxide in the neutrophils. RESULTS: A significant correlation between the neutrophil hyperfunction and the possession of HLA-B51 phenotype, regardless of the presence of the disease, was observed in humans. FMLP-stimulated neutrophils (without in vitro priming) from HLA-B51 transgenic mice, but not those from HLA-B35 transgenic mice or from nontransgenic mice, produced substantial amounts of superoxide. CONCLUSION: The HLA-B51 molecule itself may be responsible, at least in part, for neutrophil hyperfunction in Behçet's disease.

Animals↗