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71.
乙型肝炎病毒X蛋白(hepatitis B virus X protein,HBx)全长154个氨基酸,与肝癌发生密切相关.为确定HBx的优势氨基酸序列和热点突变位点,在GenBank中下载所有HBx的氨基酸序列13950条,剔除插入突变、缺失突变和起始密码子非甲硫氨酸的序列,最后保留7126条.通过分析这7126条序列,计算出HBx每个位点的氨基酸分布情况,出现频率最高的氨基酸为该位点的优势氨基酸,其他氨基酸为突变氨基酸.154个位点的优势氨基酸组成HBx优势氨基酸序列.突变率>10.0%的热点突变位点有32个.其中第36、42、44、87、88和127位氨基酸有4种(突变率>1.0%)以上突变形式,具有较高的多态性.与肝癌密切相关的K130M/V131I双突变率为34.7%.通过7126条HBx序列与优势序列的同源性比较,随机选出其中50条序列(2条与优势序列同源性<75%,48条同源性为76%~99%),与23条参考序列及优势序列共同构建系统发生树.结果显示,HBx优势氨基酸序列属于基因型C,这与基因型C为全球主要流行型一致.本研究首次系统性分析了GenBank中HBx的优势序列,确定了32个HBx热点突变位点和6个多态性较高的位点,为基于HBx突变的基础和应用研究奠定了基础.  相似文献   
72.
建立一种能对MHV_1、MHV_3、JHM、A_(59) 4种常见小鼠肝炎病毒(Murine Hepatitis Virus,MHV)进行分型检测的SNaPshot新方法。根据MHV 4种常见毒株基因序列比对结果,设计内外两对PCR通用引物和4个单碱基延伸引物,提取MHV 4种常见毒株RNA,逆转录后进行PCR扩增,纯化扩增产物,用SNaPshot方法进行单碱基延伸,将产物进行毛细管凝胶电泳,根据电泳结果分析毒株基因型。优化SNaPshot分析条件,进行灵敏度、特异性分析。用ELISA法和SNaPshot方法检测41例小鼠(Mus musculus)血清样本,将阳性样本进行克隆测序检测。当T1~T4引物修饰的poly T的数量分别为0、3、10和15,其浓度比为4︰6︰5︰10,引物大小分别为16 bp、19 bp、26 bp和31 bp时,SNa Phot分型检测MHV c DNA的最低浓度为1.25 mg/L,特异性为100%,与ELISA和T-克隆测序比较,其准确性为100%(41/41),阳性样本均为JHM毒株。实验结果说明,所建立的SNaPshot检测方法能对MHV_1、MHV_3、JHM、A_(59)进行分型检测,并且具有灵敏、特异、准确的优点。  相似文献   
73.
目的:利用基因芯片技术研究伊犁地区汉、维两个民族乙型肝炎病毒(HBV)耐药基因的差异性。方法:收集2014年1月-2015年12月我院收治的汉族及维吾尔族(以下简称"维族")慢性HBV感染患者各50例,患者均经基因芯片技术筛选确诊存在天然HBV耐药基因(耐核苷酸类药物),观察HBV耐药基因分型特点及对核苷酸类药物的耐药突变位点的情况。结果:汉族HBV感染患者的耐药基因型集中于B、C型,且以C型为主,而维族以D型为主,两组各基因型比较,差异均有统计学意义(P0.05)。汉族患者在rt204位点变异明显,而维族在rtn236t、rta181v/t+rtn236t位点变异明显,差异均有统计学意义(P0.05)。结论:在新疆伊犁地区天然HBV病毒耐药基因患者中,汉族及维族耐药基因分型及耐药基因突变位点均存在显著差异,临床可通过基因芯片技术筛选变异靶点,选择合适的敏感药物。  相似文献   
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75.
2018年已缤纷落幕,2019年带着对未来的期许纷至沓来。回顾过去,展望未来,本文整理了2018年世界乃至中国感染病界的几项重大事件与进展,并进一步梳理了该领域的发展趋势。  相似文献   
76.
为了揭示干扰素刺激基因(interferon-stimulated gene, ISG)表达的改变对乙型肝炎病毒感染治疗效果的影响,本研究检测了干扰素刺激基因STAT1、MX和SOCS3在慢性乙型肝炎患者的外周血单核细胞(peripheral blood mononuclear cell, PBMC)和肝脏样品中的表达情况。结果显示,采用聚乙二醇干扰素(Peg-IFN)治疗后,Peg-IFN应答者的PBMC和肝组织中的STAT1和MX表达水平显著升高,而非应答者的SOCS3表达显著升高。在应答者的活组织检查中,Peg-IFN治疗24 h后细胞核中磷酸化STAT1的染色比例显著增加,而非应答者在治疗前肝细胞核染色比例较高,治疗后染色比例显著减少。此外,治疗前非应答者的肝SOCS3表达水平显著高于应答者,并且随着IFN的治疗SOCS3表达继续增加。本研究表明,STAT1和MX是Peg-IFN抗病毒免疫应答的正向调节因子,而SOCS3 (JAK/STAT途径的负调节因子)激活干扰素刺激基因的负调控,并抑制Peg-IFN的免疫应答。  相似文献   
77.
The study was conducted to explore the mechanisms of sex differences in the response to chronic hepatitis B(CHB) in terms of DNA methylation, SNP genotype, and gene expression. Genomic DNA was isolated from peripheral blood mononuclear cells(PBMCs) of CHB patients and healthy controls and evaluated using the Human Methylation 450 K Assay. The DNA methylation level at hg37 chromosome(CHR) X: 7810800 was further validated using pyrosequencing.SNP genotypes, VCX m RNA expression of PBMCs, and plasma VCX protein concentration were further examined using SNaPshot, RT-qPCR, and Western blot, respectively. Results showed that a total of 5529 CpG loci were differentially methylated between male and female CHB patients. DNA methylation level and CC+CT frequency at CHR X: 7810800,VCX mRNA expression of PBMCs, and plasma VCX protein concentration were higher in female than in male CHB patients. The CHR X: 7810800 locus was hypermethylated in CHB patients with CC+CT genotypes in comparison with those with the TT genotype. In cases of CC+CT genotypes, VCX mRNA expression was negatively correlated with the DNA methylation level. CHB patients with higher levels of HBV DNA, AST, and GGT or higher GPRI scores exhibited lower VCX expression. In conclusion, SNPs and DNA methylation at the CHR X: 7810800 locus cooperatively regulate VCX expression in CHB. The upregulated VCX expression in female CHB patients might represent a mechanism of protection from more severe liver dysfunction and extensive fibrosis, as observed in male CHB patients.  相似文献   
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79.
Objectives: Nucleotide oligomerization domain 2 (NOD2) and myeloid differentiation protein 2 (MD-2) have crucial roles in the innate immune system. NOD2 is a member of the NOD-like receptor (NLR) family of pattern recognition receptors (PRRs), while MD-2 is a co-receptor for Toll-like receptor 4 (TLR4), which comprises another group of PRRs. Genetic variations in the NOD2 and MD-2 genes may be susceptibility factors to viral pathogens including hepatitis B virus (HBV). We investigated whether polymorphisms at NOD2 (rs2066845 and rs2066844) or at MD-2 (rs6472812 and rs11466004) were associated with susceptibility to HBV infection and advancement to related liver complications in a Saudi Arabian population. Methods: A total of 786 HBV-infected patients and 600 healthy uninfected controls were analyzed in the present study. HBV-infected patients were categorized into three groups based on the clinical stage of the infection: inactive HBV carriers, active HBV carriers, and patients with liver cirrhosis + hepatocellular carcinoma (HCC). Results: All four SNPs were significantly associated with susceptibility to HBV infection although none of the SNPs tested in NOD2 and MD-2 were significantly associated with persistence of HBV infection. We found that HBV-infected patients that were homozygous CC for rs2066845 in the NOD2 gene were at a significantly increased risk of progression to HBV-related liver complications (Odds Ratio = 7.443 and P = 0.044). Furthermore, haplotype analysis found that the rs2066844-rs2066845 C-G and T-G haplotypes at the NOD2 gene and four rs6472812-rs11466004 haplotypes (G-C, G-T, A-C, and A-T) at the MD-2 gene were significantly associated with HBV infection in the affected cohort compared to those found in our control group. Conclusion: We found that the single nucleotide polymorphisms rs2066844 and rs2066845 at NOD2 and rs6472812 and rs11466004 at MD-2 were associated with susceptibility to HBV infection in a Saudi population.  相似文献   
80.
Progranulin (PGRN), a widely expressed glycoprotein with pleiotropic function, has been linked to a host of physiological processes and diverse pathological states. A series of contemporary preclinical disease models and clinical trials have evaluated various therapeutic strategies targeting PGRN, highlighting PGRN as a promising therapeutic target. Herein we summarize available knowledge of PGRN targeting in various kinds of diseases, including common neurological diseases, inflammatory autoimmune diseases, cancer, tissue repair, and rare lysosomal storage diseases, with a focus on the functional domain-oriented drug development strategies. In particular, we emphasize the role of extracellular PGRN as a non-conventional, extracellular matrix bound, growth factor-like conductor orchestrating multiple membrane receptors and intracellular PGRN as a chaperone/co-chaperone that mediates the folding and traffic of its various binding partners.  相似文献   
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