阐明MUC5B在进行性肺腺癌中的分子作用:早期诊断的前景。

IF 2.3 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Gayathri Ashok, Abirami Soundararajan, Anand Anbarasu, Sudha Ramaiah
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引用次数: 0

摘要

凝胶形成粘蛋白MUC5B在肺腺癌(LUAD)中显著失调,但其在肿瘤进展中的作用尚不清楚。在这里,我们使用了一个集成的计算管道,首先是基因表达分析,然后是网络、功能富集、O-连接糖基化分析、突变谱和免疫细胞浸润估计,来对LUAD中的MUC5B基因进行功能表征。此后,临床生物标志物验证得到了总生存率(OA)和使用计算算法的临床阶段的比较表达谱的支持。LUAD的基因表达谱确定MUC5B显著上调(logFC:2.36;p值:0.01)。对LUAD相互作用组的网络分析筛选了MUC5B相关基因,其在免疫抑制和O-连接糖基化方面具有关键富集作用,富含丝氨酸-苏氨酸的串联重复序列高度糖基化。此外,突变MUC5B与肿瘤微环境(TME)中的免疫细胞(如癌症相关成纤维细胞和骨髓源性抑制细胞)的正相关性表明TME介导的肿瘤进展。与免疫抑制剂呈正相关表明MUC5B介导的肿瘤增殖增强。遗传改变导致的结构稳定性确定了整体刚性N-H骨架动力学(S2:0.756),表明整体稳定的突变蛋白。此外,低中位数OA(
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Elucidating the molecular role of MUC5B in progressive lung adenocarcinoma: Prospects for early diagnosis

Gel-forming mucin MUC5B is significantly deregulated in lung adenocarcinoma (LUAD), however, its role in tumor progression is not yet clearly understood. Here, we used an integrated computational-pipeline-initiated with gene expression analysis followed by network, functional-enrichment, O-linked glycosylation analyses, mutational profiling, and immune cell infiltration estimation to functionally characterize MUC5B gene in LUAD. Thereafter, clinical biomarker validation was supported by the overall survival (OA) and comparative expression profiling across clinical stages using computational algorithms. The gene expression profile of LUAD identified MUC5B to be significantly up-regulated (logFC: 2.36; p-value: 0.01). Network analysis on LUAD interactome screened MUC5B-related genes, having key enrichment in immune suppression and O-linked glycosylation with serine–threonine-rich tandem repeats being highly glycosylated. Furthermore, positive correlation of mutant MUC5B with immune cells in tumor microenvironment (TME) such as cancer-associated fibroblasts and myeloid-derived suppressor cells indicates TME-mediated tumor progression. The positive correlation with immune inhibitors suggested the enhanced tumor proliferation mediated by MUC5B. Structural stability due to genetic alterations identified overall rigid N–H-backbone dynamics (S2: 0.756), indicating an overall stable mutant protein. Moreover, the low median OA (<50 months) with a hazard ratio of 1.4 and clinical profile of MUC5B gene showed high median expression corresponding to lymph node (N2) and tumor (T3) stages. Our study concludes by highlighting the functional role of O-glycosylated and mutant MUC5B in promoting LUAD by immune suppression. Further, clinical gene expression validation of MUC5B suggests its potential role as a diagnostic biomarker for LUAD metastasis.

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来源期刊
Journal of Molecular Recognition
Journal of Molecular Recognition 生物-生化与分子生物学
CiteScore
4.60
自引率
3.70%
发文量
68
审稿时长
2.7 months
期刊介绍: Journal of Molecular Recognition (JMR) publishes original research papers and reviews describing substantial advances in our understanding of molecular recognition phenomena in life sciences, covering all aspects from biochemistry, molecular biology, medicine, and biophysics. The research may employ experimental, theoretical and/or computational approaches. The focus of the journal is on recognition phenomena involving biomolecules and their biological / biochemical partners rather than on the recognition of metal ions or inorganic compounds. Molecular recognition involves non-covalent specific interactions between two or more biological molecules, molecular aggregates, cellular modules or organelles, as exemplified by receptor-ligand, antigen-antibody, nucleic acid-protein, sugar-lectin, to mention just a few of the possible interactions. The journal invites manuscripts that aim to achieve a complete description of molecular recognition mechanisms between well-characterized biomolecules in terms of structure, dynamics and biological activity. Such studies may help the future development of new drugs and vaccines, although the experimental testing of new drugs and vaccines falls outside the scope of the journal. Manuscripts that describe the application of standard approaches and techniques to design or model new molecular entities or to describe interactions between biomolecules, but do not provide new insights into molecular recognition processes will not be considered. Similarly, manuscripts involving biomolecules uncharacterized at the sequence level (e.g. calf thymus DNA) will not be considered.
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