In-silico and structure-based assessment to evaluate pathogenicity of missense mutations associated with non-small cell lung cancer identified in the Eph-ephrin class of proteins.

Genomics & informatics Pub Date : 2023-09-01 Epub Date: 2023-09-27 DOI:10.5808/gi.22069
Shubhashish Chakraborty, Reshita Baruah, Neha Mishra, Ashok K Varma
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Abstract

Ephs belong to the largest family of receptor tyrosine kinase and are highly conserved both sequentially and structurally. The structural organization of Eph is similar to other receptor tyrosine kinases; constituting the extracellular ligand binding domain, a fibronectin domain followed by intracellular juxtamembrane kinase, and SAM domain. Eph binds to respective ephrin ligand, through the ligand binding domain and forms a tetrameric complex to activate the kinase domain. Eph-ephrin regulates many downstream pathways that lead to physiological events such as cell migration, proliferation, and growth. Therefore, considering the importance of Eph-ephrin class of protein in tumorigenesis, 7,620 clinically reported missense mutations belonging to the class of variables of unknown significance were retrieved from cBioPortal and evaluated for pathogenicity. Thirty-two mutations predicted to be pathogenic using SIFT, Polyphen-2, PROVEAN, SNPs&GO, PMut, iSTABLE, and PremPS in-silico tools were found located either in critical functional regions or encompassing interactions at the binding interface of Eph-ephrin. However, seven were reported in nonsmall cell lung cancer (NSCLC). Considering the relevance of receptor tyrosine kinases and Eph in NSCLC, these seven mutations were assessed for change in the folding pattern using molecular dynamic simulation. Structural alterations, stability, flexibility, compactness, and solvent-exposed area was observed in EphA3 Trp790Cys, EphA7 Leu749Phe, EphB1 Gly685Cys, EphB4 Val748Ala, and Ephrin A2 Trp112Cys. Hence, it can be concluded that the evaluated mutations have potential to alter the folding pattern and thus can be further validated by in-vitro, structural and in-vivo studies for clinical management.

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对Eph-ephrin类蛋白质中鉴定的与非小细胞肺癌癌症相关的错义突变的致病性进行原位和结构评估。
Ephs属于最大的受体酪氨酸激酶家族,在序列和结构上都高度保守。Eph的结构组织类似于其他受体酪氨酸激酶;构成细胞外配体结合结构域、纤连蛋白结构域,随后是细胞内近膜激酶和SAM结构域。Eph通过配体结合结构域与相应的肾上腺素配体结合,并形成四聚体复合物以激活激酶结构域。Eph-ephrin调节许多导致细胞迁移、增殖和生长等生理事件的下游途径。因此,考虑到Eph-ephrin类蛋白在肿瘤发生中的重要性,从cBioPortal检索了7620个临床报告的错义突变,这些突变属于一类意义未知的变量,并对其致病性进行了评估。在计算机工具中使用SIFT、Polyphen-2、PROVEAN、SNPs&GO、PMut、iSTABLE和PremPS预测的32个致病突变位于关键功能区或包含Eph-ephrin结合界面的相互作用。然而,有7例报告为非小细胞肺癌癌症(NSCLC)。考虑到受体酪氨酸激酶和Eph在NSCLC中的相关性,使用分子动力学模拟评估了这七个突变的折叠模式变化。在EphA3 Trp790Cys、EphA7 Leu749Phe、EphB1 Gly685Cys、EphB4 Val748Ala和Ephrin A2 Trp112Cys中观察到结构改变、稳定性、柔性、致密性和溶剂暴露面积。因此,可以得出结论,所评估的突变有可能改变折叠模式,因此可以通过体外、结构和体内研究进一步验证,用于临床管理。
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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