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潜在的 COVID-19 免疫系统相关基因的作用及与 2 型糖尿病的潜在关联途径。

Role of Potential COVID-19 Immune System Associated Genes and the Potential Pathways Linkage with Type-2 Diabetes.

机构信息

Department of Biochemistry, College of Sciences, University of Jeddah, Jeddah, Saudi Arabia.

Department of Microbiology and Immunology, Faculty of Medicine, Ibn Sina National College, Jeddah, Saudi Arabia.

出版信息

Comb Chem High Throughput Screen. 2022;25(14):2452-2462. doi: 10.2174/1386207324666210804124416.

Abstract

BACKGROUND

Coronavirus is an enclosed positive-sense RNA virus with club-like spikes extending from its surface. It is most typically associated with acute respiratory infections in humans, but its capacity to infect many host species and cause multiple illnesses makes it a complicated pathogen. The frequent encounters between wild animals and humans are a typical cause of infection. The zoonotic infections SARS-CoV and MERS-CoV are among the most common causes of serious respiratory illnesses in humans.

AIM

The main goal of this research was to look at gene expression profiles in human samples that were either infected with coronavirus or were not, and compare the varied expression patterns and their functional implications.

METHODS

The previously researched samples were acquired from a public database for this purpose, and the study was conducted, which included gene expression analysis, pathway analysis, and network-level comprehension. The results for differentially expressed genes, enriched pathways, and networks for prospective genes and gene sets are presented in the analysis. In terms of COVID-19 gene expression and its relationship to type 2 diabetes.

RESULTS

We see a lot of genes that have different gene expression patterns than normal for coronavirus infection, but in terms of pathways, it appears that there are only a few sets of functions that are affected by altered gene expression, and they are related to infection, inflammation, and the immune system.

CONCLUSION

Based on our study, we conclude that the potential genes which are affected due to infection are NFKBIA, MYC, FOXO3, BIRC3, ICAM1, IL8, CXCL1/2/5, GADD45A, RELB, SGK1, AREG, BBC3, DDIT3/4, EGR1, MTHFD2, and SESN2 and the functional changes are mainly associated with these pathways: TNF, cytokine, NF-kB, TLR, TCR, BCR, Foxo, and TGF signaling pathways are among them and there are additional pathways such as hippo signaling, apoptosis, estrogen signaling, regulating pluropotency of stem cells, ErbB, Wnt, p53, cAMP, MAPK, PI3K-AKT, oxidative phosphorylation, protein processing in endoplasmic reticulum, prolactin signaling, adipocytokine, neurotrophine signaling, and longevity regulating pathways. SMARCD3, PARL, GLIPR1, STAT2, PMAIP1, GP1BA, and TOX genes and PI3K-Akt, focal adhesion, Foxo, phagosome, adrenergic, osteoclast differentiation, platelet activation, insulin, cytokine- cytokine interaction, apoptosis, ECM, JAK-STAT, and oxytocin signaling appear as the linkage between COVID-19 and Type-2 diabetes.

摘要

背景

冠状病毒是一种带有棒状刺突的封闭正链 RNA 病毒,从其表面伸出。它最常与人类的急性呼吸道感染有关,但它感染多种宿主物种并引起多种疾病的能力使其成为一种复杂的病原体。野生动物与人类的频繁接触是感染的一个典型原因。人畜共患感染 SARS-CoV 和 MERS-CoV 是人类最常见的严重呼吸道疾病的原因之一。

目的

本研究的主要目的是观察感染冠状病毒或未感染冠状病毒的人类样本中的基因表达谱,并比较不同的表达模式及其功能意义。

方法

为此目的,从公共数据库中获取了先前研究的样本,并进行了研究,包括基因表达分析、途径分析和网络级理解。分析中呈现了差异表达基因、富集途径和有前景基因和基因集的网络。关于 COVID-19 基因表达及其与 2 型糖尿病的关系。

结果

我们看到很多基因的冠状病毒感染后表达模式与正常情况不同,但就途径而言,似乎只有少数几类功能受到基因表达改变的影响,它们与感染、炎症和免疫系统有关。

结论

根据我们的研究,我们得出结论,由于感染而受影响的潜在基因是 NFKBIA、MYC、FOXO3、BIRC3、ICAM1、IL8、CXCL1/2/5、GADD45A、RELB、SGK1、AREG、BBC3、DDIT3/4、EGR1、MTHFD2 和 SESN2,功能变化主要与这些途径相关:TNF、细胞因子、NF-kB、TLR、TCR、BCR、Foxo 和 TGF 信号通路,此外还有 hippo 信号通路、细胞凋亡、雌激素信号通路、调节干细胞多能性、ErbB、Wnt、p53、cAMP、MAPK、PI3K-AKT、氧化磷酸化、内质网蛋白质加工、催乳素信号通路、脂肪细胞因子、神经营养素信号通路和长寿调节通路。SMARCD3、PARL、GLIPR1、STAT2、PMAIP1、GP1BA 和 TOX 基因和 PI3K-Akt、焦点粘连、Foxo、吞噬体、肾上腺素能、破骨细胞分化、血小板激活、胰岛素、细胞因子-细胞因子相互作用、细胞凋亡、细胞外基质、JAK-STAT 和催产素信号通路似乎是 COVID-19 和 2 型糖尿病之间的联系。

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