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1.
水痘-带状疱疹病毒(varicella zoster virus,VZV)糖蛋白E(glycoprotein E,gE)是VZV亚单位疫苗的主要候选蛋白,但目前原核表达系统制备的gE蛋白以包涵体形式为主,可溶性差。本研究采用去除第1~30氨基酸序列的VZV gE胞外域基因,将其与原核表达载体pET32a连接,并转化至感受态细胞BL21(DE3)中。使用异丙基-β-D-硫代半乳糖苷(Isopropylβ-D-thiogalactoside,IPTG)诱导表达,His-tag柱纯化重组gE蛋白,蛋白质印迹法(Western blot,WB)检测其特异性。用该重组gE蛋白免疫BALB/c小鼠制备多克隆抗体,酶联免疫吸附试验(enzyme linked immunosorbent assay,ELISA)和间接免疫荧光法检测多克隆抗体效价及特异性。结果显示,BL21/pET32a-VZV gE工程菌可以表达可溶性重组gE蛋白,纯化后纯度约为90%。WB鉴定该重组蛋白具有良好的免疫反应性。ELISA检测显示小鼠抗VZV gE多克隆抗体效价>1∶10 000,间接免疫荧光实验结果显示该抗体特异性较高。结果表明,本研究在原核表达系统中成功表达可溶性重组VZV gE蛋白,同时该蛋白具有较强的免疫原性,这为VZV gE亚单位疫苗的研制和大规模生产奠定了基础。  相似文献   
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肝素和硫酸乙酰肝素是一类应用于临床抗凝血的糖胺聚糖。肝素葡萄糖醛酸C5异构酶(Heparosan-N-sulfate-glucuronate 5-epimerase,C5,EC 5.1.3.17) 是肝素和硫酸乙酰肝素合成过程中重要的修饰酶,催化N-硫酸化肝素前体 (N-sulfoheparosan) 的D-葡萄糖醛酸 (D-GlcA) 上5号位羧基翻转生成L-艾杜糖醛酸 (L-iduronic acid,L-IdoA)。文中以大肠杆菌Escherichia coli为宿主对斑马鱼来源的肝素葡萄糖醛酸C5异构酶基因Glce进行重组表达优化与分子改造。比较了3种不同的表达载体pET20b(+)、pET28a(+) 和pCold Ⅲ对C5表达的差异情况,其中以嗜冷启动型载体pCold Ⅲ表达酶活最高,达到(1 873.61±5.42) U/L。为了进一步提高C5的可溶表达量,在N端融合促溶标签SET2后,可溶蛋白表达量比对照提高了50%,酶活达到 (2 409.25±6.43) U/L。在此基础上,通过理性设计对底物结合口袋进行定点突变,获得最优突变体 (V153R) 的酶活和比酶活分别为 (5 804.32±5.63) U/L和(145.14±2.33) U/mg,是原始酶的2.41倍和2.28倍。肝素C5异构酶改造与表达优化为酶法催化合成肝素奠定了基础。  相似文献   
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Sorghum is largely grown for food, fodder and for biofuel production in semi-arid regions where the drought or high temperature or their combination co-occur. Plant microRNAs (miRNAs) are integral to the gene regulatory networks that control almost all biological processes including adaptation to stress conditions. Thus far, plant miRNA profiles under separate drought or heat stresses have been reported but not under combined drought and heat. In this study, we report miRNA profiles in leaves of sorghum exposed to individual drought or heat or their combination. Approximately 29 conserved miRNA families represented by 80 individual miRNAs, 26 families represented by 47 members of less conserved or sorghum-specific miRNA families as well as 8 novel miRNA families have been identified. Of these, 25 miRNAs were found to be differentially regulated in response to stress treatments. The comparative profiling revealed that the miRNA regulation was stronger under heat or combination of heat and drought compared to the drought alone. Furthermore, using degradome sequencing, 48 genes were confirmed as targets for the miRNAs in sorghum. Overall, this study provides a framework for understanding of the miRNA-guided gene regulations under combined stresses.

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Background

Glutathione S-transferase P1 (GSTP1) is thought to be involved in the detoxification of reactive carcinogen metabolites. Numerous epidemiological studies have evaluated the association of GSTP1 Ile105Val polymorphism with the risk of prostate cancer. However, the results remain inconclusive. To derive a more precise estimation, a meta-analysis was performed.

Methodology/Principal Findings

A comprehensive search was conducted to identify the eligible studies. We used odds ratios (ORs) with 95% confidence intervals (CIs) to assess the strength of the relationship. The overall association was not significant (Val/Val vs. Ile/Ile OR = 1.06, 95% CI = 0.90–1.25, P = 0.50; Val/Val vs. Val/Ile+Ile/Ile: OR = 1.07, 95% CI = 0.91–1.25, P = 0.44). In subgroup analyses by ethnicity and prostate cancer grade, the similar results were observed. However, in stratified analysis by clinical stage, we found a significant association with low-stage prostate cancer (Val/Val vs. Ile/Ile: OR = 2.70, 95% CI = 1.73–4.22, P<0.001; Val/Val vs. Val/Ile+Ile/Ile: OR = 2.14, 95% CI = 1.38–3.33, P = 0.001). Moreover, there was no statistically significant evidence of multiplicative interactions neither between the GSTP1 Ile105Val polymorphism and GSTM1, nor between smoking status and GSTP1 on prostate cancer risk.

Conclusions

This meta-analysis showed that GSTP1 Ile105Val polymorphism might not be significantly associated with overall prostate cancer risk. Further stratified analyses showed a significant association with low-stage prostate cancer.  相似文献   
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Doxorubicin (DOX) is widely used to treat various cancers affecting adults and children; however, its clinical application is limited by its cardiotoxicity. Previous studies have shown that children are more susceptible to the cardiotoxic effects of DOX than adults, which may be related to different maturity levels of cardiomyocyte, but the underlying mechanisms are not fully understood. Moreover, researchers investigating DOX‐induced cardiotoxicity caused by human‐induced pluripotent stem cell‐derived cardiomyocytes (hiPSC‐CMs) have shown that dexrazoxane, the recognized cardioprotective drug for treating DOX‐induced cardiotoxicity, does not alleviate the toxicity of DOX on hiPSC‐CMs cultured for 30 days. We have suggested that this may be ascribed to the immaturity of the 30 days hiPSC‐CMs. In this study, we investigated the mechanisms of DOX induced cardiotoxicity in cardiomyocytes of different maturity. We selected 30‐day‐old and 60‐day‐old hiPSC‐CMs (day 30 and day 60 groups), which we term ‘immature’ and ‘relatively mature’ hiPSC‐CMs, respectively. The day 30 CMs were found to be more susceptible to DOX than the day 60 CMs. DOX leads to more ROS (reactive oxygen species) production in the day 60 CMs than in the relatively immature group due to increased mitochondria number. Moreover, the day 60 CMs mainly expressed topoisomerase IIβ presented less severe DNA damage, whereas the day 30 CMs dominantly expressed topoisomerase IIα exhibited much more severe DNA damage. These results suggest that immature cardiomyocytes are more sensitive to DOX as a result of a higher concentration of topoisomerase IIα, which leads to more DNA damage.  相似文献   
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