Medical Proteomics Unit, Research Department, Faculty of Medicine Siriraj Hospital, Mahidol University, Bangkok, Thailand.
Medical Proteomics Unit, Research Department, Faculty of Medicine Siriraj Hospital, Mahidol University, Bangkok, Thailand.
Biomed J. 2023 Apr;46(2):100577. doi: 10.1016/j.bj.2023.01.001. Epub 2023 Jan 13.
Mass spectrometry-based proteomics has been extensively applied to current biomedical research. From such large-scale identification of proteins, several computational tools have been developed for determining protein-protein interactions (PPI) network and functional significance of the identified proteins and their complex. Analyses of PPI network and functional enrichment have been widely applied to various fields of biomedical research. Herein, we summarize commonly used tools for PPI network analysis and functional enrichment in kidney stone research and discuss their applications to kidney stone disease (KSD). Such computational approach has been used mainly to investigate PPI networks and functional significance of the proteins derived from urine of patients with kidney stone (stone formers), stone matrix, Randall's plaque, renal papilla, renal tubular cells, mitochondria and immune cells. The data obtained from computational biotechnology leads to experimental validation and investigations that offer new knowledge on kidney stone formation processes. Moreover, the computational approach may also lead to defining new therapeutic targets and preventive strategies for better outcome in KSD management.
基于质谱的蛋白质组学已广泛应用于当前的生物医学研究。从这种大规模的蛋白质鉴定中,已经开发了几种计算工具来确定蛋白质-蛋白质相互作用(PPI)网络以及鉴定蛋白质及其复合物的功能意义。PPI 网络和功能富集的分析已广泛应用于生物医学研究的各个领域。本文总结了在肾结石研究中常用的 PPI 网络分析和功能富集工具,并讨论了它们在肾结石病(KSD)中的应用。这种计算方法主要用于研究来自肾结石(结石形成者)患者尿液、结石基质、兰德尔斑块、肾乳头、肾小管细胞、线粒体和免疫细胞的蛋白质的 PPI 网络和功能意义。计算生物技术获得的数据可用于实验验证和研究,为肾结石形成过程提供新知识。此外,这种计算方法还可能为 KSD 管理的更好结果定义新的治疗靶点和预防策略。