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The liver enzymes alcohol dehydrogenase (ADH) and aldehyde dehydrogenase (ALDH), which are responsible for the oxidative metabolism of ethanol, are polymorphic in humans. An allele encoding an inactive form of the mitochondrial ALDH2 is known to reduce the likelihood of alcoholism in Japanese. We hypothesized that the polymorphisms of both ALDH and ADH modify the predisposition to development of alcoholism. Therefore, we determined the genotypes of the ADH2, ADH3, and ALDH2 loci of alcoholic and nonalcoholic Chinese men living in Taiwan, using leukocyte DNA amplified by the PCR and allele-specific oligonucleotides. The alcoholics had significantly lower frequencies of the ADH2*2, ADH3*1, and ALDH2*2 alleles than did the nonalcoholics, suggesting that genetic variation in both ADH and ALDH, by modulating the rate of metabolism of ethanol and acetaldehyde, influences drinking behavior and the risk of developing alcoholism.  相似文献   
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β-N-Acetylhexosaminidases were detected in 10 insects including species of Lepidoptera, Coleoptera, Hemiptera, and Orthoptera. Two enzymes were purified from the tobacco hornworm, Manduca sexta (L.). EI was detected in larval and pharate pupal molting fluid, integument, and pupal hemolymph while EII was found in larval and pupal hemolymphs. They are acidic hydrolases with similar molecular weights (6.1 × 104), molar extinction coefficients at 280 nm (1.9 × 105 liters mol?1 cm?1), and pH optima (pH 6). They differ in the number of polypeptide chains per molecule (EI is a single chain and EII consists of two polypeptide chains), amino acid composition, extent of glycosylation (EII is probably a glycoprotein), isoelectric point (pIEI = 5.9 and pIEII ~- 5.1), tissue distribution, and reactivities toward nitrophenylated N-acetylglucosamine (kcat,I = 328 s?1 and kcat,II = 103 s?1) and N,N′-diacetylchitobiose (kcat,I = 307 s?1 and kcat,II = 3 s?1). These results suggest that EI is a chitinase and that EII may function as a hexosaminidase in vivo.  相似文献   
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Summary An approach is described whereby cells with definitive markers are followed from their source through dissociation and fractionation, then during long-term maintenance in vitro. Such sequential studies should enable investigators to define factors regulating proliferation and function of specific cells since ambiguity concerning identity is readily avoided.Pancreatic cells of guinea pigs were isolated by enzymic dissociation, and exocrine cells were enriched by centrifugation with solutions of serum albumin. Resulting populations consisting of up to 95% exocrine cells were then incubated with gyration to produce aggregates, and these were seeded to standard culture plates for further study. Colonial aggregates of exocrine epithelia develop in culture and can be maintained for 20–30 days. The cells exhibit changes with time that are qualitatively similar to those known to occur during serial cultivation of diploid fibroblastlike cells from human and other species. The uptake of tritiated thymidine decreases with maintenance time. Autoradiographic examination indicates that this is due to a reduction in the number of epithelial cells incorporating the isotope. Cell diameters increase from an average of 21 m at day 0 to 44 m by day 26, and a marked increase in heterogeneity of this parameter is also evident. Cellular DNA and protein accumulate during the same interval. Incorporation of tritiated leucine during 24-h exposures increases until about the 10th day in vitro and remains relatively constant for at least 2 weeks thereafter.The data are consistent with the hypothesis that exocrine pancreatic cells like other diploid cells in culture, progress to terminal differentiation under the culture conditions employed. The role of physical, nutritional, and humoral evironmental factors on this process will be the subject of future reports.Supported in part by National Cancer Institute Contracts NO1-CP-43231 and NO1-CP-65751  相似文献   
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Background

The GCK gene encodes hexokinase 4, which catalyzes the first step in most glucose metabolism pathways. The purpose of our study is to assess the contribution of GCK methylation to type 2 diabetes (T2D).

Methods and results

GCK methylation was evaluated in 48 T2D cases and 48 age- and gender-matched controls using the bisulphite pyrosequencing technology. Among the four CpG sites in the methylation assay, CpG4 and the other three CpGs (CpG1-3) were not in high correlation (r < 0.5). Significantly elevated methylation levels of GCK CpG4 methylation were observed in T2D patients than in the healthy controls (P = 0.004). A breakdown analysis by gender indicated that the association between CpG4 methylation and T2D was specific to males (P = 0.002). It is intriguing that another significant male-specific association was also found between GCK CpG4 methylation and total cholesterol (TC) concentration (r = 0.304, P = 0.036).

Conclusion

Our results showed that elevated GCK CpG4 methylation might suggest a risk of T2D in Chinese males. Gender disparity in GCK CpG4 methylation might provide a clue to elaborate the pathogenesis of T2D.  相似文献   
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核定位信号肽提高核糖体区打靶载体转染效率的研究   总被引:1,自引:0,他引:1  
核糖体区打靶载体(10~14 kb)是中南大学医学遗传学国家重点实验室构建的一种具有定点整合能力的非病毒载体,具有安全性好及长期稳定表达的特点,但是较低的转染率成为其应用于临床的主要障碍.核定位信号肽可以促进非病毒载体进入细胞核,从而提高其转染效率.但是核定位信号肽提高外源基因表达的能力却严重受到其与DNA偶联方式及偶联剂的影响.采用偶联剂SPB可以通过静电作用将核糖体区打靶载体与SV40 核定位信号肽有效结合,并且可以防止其被DNase降解.应用聚乙烯亚胺转染人原代皮肤成纤维细胞后,激光共聚焦显微镜观察显示,核定位信号肽可以在60 min内携带12 kb的质粒DNA进入细胞核.转染后48 h,流式细胞仪检测GFP表达,结果显示转染率提高了4~5倍.聚乙烯亚胺是一种毒性小,而且价格低廉的高分子转染试剂,广泛被应用于体内基因治疗的研究中,上述研究将会促进核糖体区打靶载体在临床基因治疗中的应用.  相似文献   
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We examined the impact of Helicobacter pylori infection on the murine gastric microbiota by culture and terminal-restriction fragment length polymorphism and found that neither acute nor chronic H. pylori infection substantially affected the gastric microbial composition. Interestingly, the total H. pylori burden detected by real-time PCR was significantly higher than that revealed by viable counts, suggesting that the antigenic load sustaining H. pylori-induced gastritis could be considerably higher than previously believed.  相似文献   
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