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利用代谢组学理解宿主与A组轮状病毒相互作用组

Tapping into Metabolomics for Understanding Host and Rotavirus Group A Interactome.

作者信息

Mametja Phiona Moloi, Motshudi Mmei Cheryl, Naidoo Clarissa Marcelle, Rakau Kebareng, Seheri Luyanda Mapaseka, Mkolo Nqobile Monate

机构信息

Department of Biology and Environmental Sciences, Sefako Makgatho Health Sciences University, Pretoria 0204, South Africa.

Diarrheal Pathogens Research Unit, Department of Virology, Sefako Makgatho Health Sciences University, Pretoria 0204, South Africa.

出版信息

Life (Basel). 2025 May 10;15(5):765. doi: 10.3390/life15050765.

Abstract

Group A rotavirus continues to be a leading global etiological agent of severe gastroenteritis in young children under 5 years of age. The replication of this virus in the host is associated with the occurrence of Lewis antigens and the secretor condition. Moreover, histo-blood group antigens (HBGAs) act as attachment factors to the outer viral protein of VP4 for rotavirus. Therefore, in this study, we employed a metabolomic approach to reveal potential signature metabolic molecules and metabolic pathways specific to rotavirus P[8] strain infection (VP4 genotype), which is associated with the expression of HBGA combined secretor and Lewis (Le) phenotypes, specifically secretor/Le. Further integration of the achieved metabolomics results with lipidomic and proteomics metadata analyses was performed. Saliva samples were collected from children diagnosed as negative or positive for rotavirus P[8] strain infection (VP4 genotype), which is associated with the HBGA combined secretor/Le. A total of 22 signature metabolic molecules that were downregulated include butyrate, putrescine, lactic acid, and 7 analytes. The upregulated metabolic molecule was 2,3-Butanediol. Significant pathway alterations were also specifically observed in various metabolism processes, including galactose and butanoate metabolisms. Butyrate played a significant role in viral infection and was revealed to exhibit different reactions with glycerolipids, glycerophospholipids, sphingolipids, sterol lipids, and fatty acyls. Moreover, butyrate might interact with protein receptors of free fatty acid receptor 2 (FFAR2) and free fatty acid receptor 3 (FFAR3). The revealed metabolic pathways and molecule might provide fundamental insight into the status of rotavirus P[8] strain infection for monitoring its effects on humans.

摘要

A组轮状病毒仍然是全球5岁以下幼儿严重胃肠炎的主要病原体。该病毒在宿主体内的复制与Lewis抗原的出现及分泌状态有关。此外,组织血型抗原(HBGA)作为轮状病毒VP4外病毒蛋白的附着因子。因此,在本研究中,我们采用代谢组学方法来揭示轮状病毒P[8]株感染(VP4基因型)特有的潜在标志性代谢分子和代谢途径,该基因型与HBGA联合分泌型和Lewis(Le)表型的表达相关,特别是分泌型/Le。我们还将获得的代谢组学结果与脂质组学和蛋白质组学元数据分析进行了进一步整合。从诊断为轮状病毒P[8]株感染(VP4基因型)阴性或阳性的儿童中采集唾液样本,该基因型与HBGA联合分泌型/Le相关。共有22种下调的标志性代谢分子,包括丁酸、腐胺、乳酸和7种分析物。上调的代谢分子是2,3-丁二醇。在各种代谢过程中也特别观察到了显著的途径改变,包括半乳糖和丁酸代谢。丁酸在病毒感染中起重要作用,并且显示出与甘油脂、甘油磷脂、鞘脂、甾醇脂和脂肪酸酰基有不同反应。此外,丁酸可能与游离脂肪酸受体2(FFAR2)和游离脂肪酸受体3(FFAR3)的蛋白质受体相互作用。所揭示的代谢途径和分子可能为轮状病毒P[8]株感染状态提供基本见解,以监测其对人类的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/37ac/12113392/7dcb03e9676f/life-15-00765-g001.jpg

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