Deciphering Deleterious nsSNPs in MUC16's SEA Domain: Structural and Functional Implications in Cancer Metastasis via Computational Analysis

IF 5.3
Muaz Faruque, Maisha Maliha Medha, A. M. U. B. Mahfuz, Md. Monirul Islam, Md Afjalus Siraj
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引用次数: 0

Abstract

MUC16 ranks among the top three genes exhibiting the highest mutation frequencies in various cancer types. It encodes transmembrane mucins present in the epithelial linings of the ocular, respiratory, gastric and female reproductive systems, serving to protect and maintain mucosal surfaces. Overexpression of MUC16 contributes to the differentiation, proliferation, invasion and metastasis of cancer cells in ovarian, endometrial, pancreatic, colon, breast and non-small-cell lung cancers. In this study, we analysed the structural and functional effects of pathogenic and potentially harmful non-synonymous single nucleotide polymorphisms (nsSNPs) of MUC16, employing a blend of computational algorithms. Initially, SNPs data for MUC16 were gathered from the Ensembl database and refined using computational tools (PROVEAN, SIFT, PolyPhen-2, SNAP-2, MutPred, I-Mutant3.0 and MUpro) to isolate four final pathogenic SNP variants (L151P, Y144N, C111Y and D108Y). Through evolutionary conservation analysis, we determined that these mutational variants originate from a highly conserved and stable domain. Our findings particularly emphasise the Y144N variant as a potentially highly deleterious mutation situated in the SEA5 domain. This variant could significantly impact stability, overall flexibility, compactness, expansion, glycosylation ability and metastatic potential when compared to both the wild-type and other mutant variants. In summary, these findings shed light on missense mutational variants, providing insights into the vast array of disease susceptibilities associated with MUC16's glycosylation process. This understanding could aid in the development of effective drugs for diseases linked with these mutations.

通过计算分析解读MUC16 SEA区域的有害nsSNPs:在癌症转移中的结构和功能意义
MUC16是各种癌症类型中突变频率最高的前三大基因之一。它编码存在于眼、呼吸、胃和女性生殖系统上皮内的跨膜粘蛋白,用于保护和维持粘膜表面。MUC16的过表达参与了卵巢癌、子宫内膜癌、胰腺癌、结肠癌、乳腺癌和非小细胞肺癌中癌细胞的分化、增殖、侵袭和转移。在这项研究中,我们采用混合计算算法分析了MUC16致病性和潜在有害的非同义单核苷酸多态性(nssnp)的结构和功能影响。最初,从Ensembl数据库中收集MUC16的SNP数据,并使用计算工具(provan, SIFT, polyphen2, SNAP-2, MutPred, I-Mutant3.0和MUpro)进行细化,以分离出四个最终致病SNP变体(L151P, Y144N, C111Y和D108Y)。通过进化保守分析,我们确定这些突变变体起源于一个高度保守和稳定的结构域。我们的研究结果特别强调了Y144N变体是位于SEA5结构域的潜在高度有害突变。与野生型和其他突变变体相比,该变体可能显著影响稳定性、整体灵活性、紧凑性、扩张、糖基化能力和转移潜力。总之,这些发现揭示了错义突变变异,提供了与MUC16糖基化过程相关的大量疾病易感性的见解。这种认识有助于开发针对与这些突变有关的疾病的有效药物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
11.50
自引率
0.00%
发文量
0
期刊介绍: The Journal of Cellular and Molecular Medicine serves as a bridge between physiology and cellular medicine, as well as molecular biology and molecular therapeutics. With a 20-year history, the journal adopts an interdisciplinary approach to showcase innovative discoveries. It publishes research aimed at advancing the collective understanding of the cellular and molecular mechanisms underlying diseases. The journal emphasizes translational studies that translate this knowledge into therapeutic strategies. Being fully open access, the journal is accessible to all readers.
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