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首页> 外文期刊>Journal of cellular biochemistry. >Assessment of epigenetic alterations and in silico analysis of mutation affecting PTEN PTEN expression among Indian cervical cancer patients
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Assessment of epigenetic alterations and in silico analysis of mutation affecting PTEN PTEN expression among Indian cervical cancer patients

机译:对印度宫颈癌患者PTEN PTEN表达影响PTEN PTEN表达的表观遗传改变和突变分析的评估

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Abstract Genetic and epigenetic anomalies accountable for genetic dysregulation are the most common aberrations that determine the underlying heterogeneity of the tumor cells. Currently, phosphatase and tensin homolog (PTEN) incongruity has emerged as potent and persuasive malfunctioning in varied human malignancies. In this study, we have analysed the promoter hypermethylation and expression status of PTEN. We identified different mutations in the exonic region of PTEN . Functional consequences of these mutations were explored using in silico techniques. Promoter hypermethylation of PTEN was detected using methylation‐specific polymerase chain reaction (MS‐PCR), expression analysis was performed with immunohistochemistry (IHC) and mutation by direct sequencing in a total of 168 uterine cervix tumor cases. The findings were statistically correlated with the clinical parameters. In addition, the effect of nonsynonymous mutations was studied with molecular dynamics simulations. PTEN promoter hypermethylation (45.8%) was found to be significantly associated with the of PTEN loss (57.14%, P ??0.0001). Tumor stages, tumor size, lymph node (LN) were found to be significantly correlated with both PTEN promoter hypermethylation and PTEN loss. Histological grade, however, showed a significant association with only PTEN loss. In total, 11.76% of tumors exhibited mutations in exon 5 and 7, out of which E150K of exon 5 showed the highest deviations in the crystal structure of PTEN by in silico analysis. This study provides valuable insights into oncology and paves the path in the development of efficient biomarker and/or imperative therapeutic tool for cervical cancer treatment.
机译:摘要遗传和表观遗传异常对于遗传失调负责是最常见的畸变,确定肿瘤细胞的潜在异质性。目前,磷酸酶和苔藓素同源物(PTEN)不协调是出现为各种人类恶性肿瘤的有效性和有说服力的故障。在这项研究中,我们分析了PTEN的启动子高甲基化和表达状态。我们鉴定了PTEN的偏振区域中的不同突变。使用硅技术探索这些突变的功能后果。使用甲基化特异性聚合酶链反应(MS-PCR)检测PTEN的启动子高甲基化,用免疫组织化学(IHC)进行表达分析,并通过直接测序在总共168例子宫颈肿瘤病例中进行突变。调查结果与临床参数有统计学相关。此外,利用分子动力学模拟研究了非纯突变的效果。发现PTEN启动子高甲基化(45.8%)与PTEN损失显着相关(57.14%,p≤0.0001)。发现肿瘤阶段,肿瘤大小,淋巴结(LN)与PTEN启动子高甲基化和PTEN损失显着相关。然而,组织学级别表现出与PTEN损失有重大关联。总共11.76%的肿瘤在外显子5和7中表现出突变,其中外显子5的E150K显示了PTEN在硅分析中的晶体结构的最高偏差。本研究为肿瘤学提供了有价值的见解,并铺平了宫颈癌治疗的高效生物标志物和/或势不一的治疗工具的发展。

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