Identification of Genetic Variants in Exon 4 of TP53 in Lung Carcinoma and in Silico Prediction of Their Significance.

IF 1.2 2区 数学 Q1 MATHEMATICS Transactions of the American Mathematical Society Pub Date : 2024-04-01 Epub Date: 2022-12-08 DOI:10.1007/s12291-022-01099-9
Rajendra Prasad, Kirti Sharma, Karanpreet Bhutani, Suvarna Prasad, Sunita Manhas, Jai Kishan
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Abstract

Lung cancer is a severe and the leading cause of cancer related deaths in men and women all over the world. Tumor suppressor protein (TP53) encoded by the TP53 gene which plays a pivotal role in various cellular tumor suppression processes viz cell cycle arrest and apoptosis. Henceforth, the present study was aimed to TP53 exon4 variants from lung carcinoma. Histopathologic and clinically proven 20 patients of lung cancer were enrolled in this study the average age of patients was 45 ± 8 years which categorized as early onset of lung cancer. Genomic DNA was isolated from the blood specimen of patients. Extracted DNA was subjected to PCR amplification for exon 4 of TP53 using appropriate primers and subsequently amplified products were applied to nucleotide alterations via using the DNA sanger sequencing. The genetic analysis documented five variants in exon4 of TP53 which include viz. 4 substitutions [c.215 > C at codon 72, C. 358-359AA > GG at codon 120] were highly prevalent, occurring in 63% and 25% frequency in patients. Other two variants viz. C. 358 A > C at codon 120, C. 365T > G at codon 122 were present at frequency of 15% whilst one deletion variant [152 del C] was found with 5% frequency. Furthermore, alterations on codon 72, 120,122 and 51 were characterized as possibly damaging by Poly Phen-2 and decreased stability using stability bioinformatic tool. Taken together all these findings infer that TP53 gene involved in modulation and susceptibility to lung cancer.

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肺癌 TP53 第 4 外显子基因变异的鉴定及其重要性的硅预测
肺癌是一种严重的癌症,也是全世界男性和女性因癌症死亡的主要原因。由 TP53 基因编码的肿瘤抑制蛋白(TP53)在细胞周期停滞和细胞凋亡等各种细胞肿瘤抑制过程中发挥着关键作用。因此,本研究的目标是肺癌中的 TP53 外显子 4 变异。经组织病理学和临床证实的 20 名肺癌患者被纳入本研究,患者平均年龄为 45 ± 8 岁,属于早期肺癌。基因组 DNA 从患者的血液标本中分离出来。提取的 DNA 使用适当的引物对 TP53 第 4 外显子进行 PCR 扩增,随后使用 DNA 桑格测序法对扩增产物进行核苷酸变异检测。基因分析记录了 TP53 第 4 外显子的 5 个变异,其中 4 个替换[密码子 72 上的 c.215 > C、密码子 120 上的 C. 358-359AA > GG]非常普遍,在患者中的发生率分别为 63% 和 25%。其他两种变异,即密码子 120 上的 C. 358 A > C 和密码子 122 上的 C. 365T > G,出现频率为 15%,而一种缺失变异[152 del C]的出现频率为 5%。此外,密码子 72、120、122 和 51 上的变异可能会通过 Poly Phen-2 造成破坏,并通过稳定性生物信息工具降低稳定性。综上所述,所有这些发现都推断 TP53 基因参与了肺癌的调节和易感性。
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来源期刊
CiteScore
2.30
自引率
7.70%
发文量
171
审稿时长
3-6 weeks
期刊介绍: All articles submitted to this journal are peer-reviewed. The AMS has a single blind peer-review process in which the reviewers know who the authors of the manuscript are, but the authors do not have access to the information on who the peer reviewers are. This journal is devoted to research articles in all areas of pure and applied mathematics. To be published in the Transactions, a paper must be correct, new, and significant. Further, it must be well written and of interest to a substantial number of mathematicians. Piecemeal results, such as an inconclusive step toward an unproved major theorem or a minor variation on a known result, are in general not acceptable for publication. Papers of less than 15 printed pages that meet the above criteria should be submitted to the Proceedings of the American Mathematical Society. Published pages are the same size as those generated in the style files provided for AMS-LaTeX.
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