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锰(II)诱导的蛋白质-蛋白质相互作用网络的预测 于……中

Prediction of Protein-Protein Interaction Network Induced by Manganese II in .

作者信息

Ruas France Anne Dias, Guerra-Sá Renata

机构信息

Laboratório de Bioquímica e Biologia Molecular, Departamento de Ciências Biológicas, Instituto de Ciências Exatas e Biológica (NUPEB), Universidade Federal de Ouro Preto, Ouro Preto, Brazil.

出版信息

Front Microbiol. 2020 Feb 19;11:236. doi: 10.3389/fmicb.2020.00236. eCollection 2020.

Abstract

Recently, there has been an increasing interest in the use of yeast to produce biosorbent materials, because yeast is economical to use, adaptable to a variety of conditions, and amenable to morphological manipulations to yield better raw biomaterials. Previous studies from our laboratory have shown that , a non-pathogenic haploid yeast (ascomycete), exhibits excellent biosorption capacity for Mn, as demonstrated by kinetic analyses. Shotgun/bottom-up analyses of soluble fractions revealed a total of 1257 identified molecules, with 117 proteins expressed in the absence of Mn and 69 expressed only in the presence of Mn. In this article, we describe the first prediction and screening of protein-protein interactions (PPIs) in using experimental data from shotgun/bottom-up analyses. We also present the categorization of biological processes (BPs), molecular functions (MFs), and metabolic pathways of 71 proteins upregulated in the proteome in response to stress caused by an excess of Mn ions. Most of the annotated proteins were related to oxidation-reduction processes, metabolism, and response to oxidative stress. We identified seven functional enrichments and 42 metabolic pathways; most proteins belonged to pathways related to metabolic pathways (19 proteins) followed by the biosynthesis of secondary metabolites (10 proteins) in the presence of Mn. Using our data, it is possible to infer that defense mechanisms minimize the impact of Mn via the expression of antioxidant proteins, thus allowing adjustment during the defense response. Previous studies have not considered protein interactions in this genus in a manner that permits comparisons. Consequently, the findings of the current study are innovative, highly relevant, and provide a description of interactive complexes and networks that yield insight into the cellular processes of . Collectively, our data will allow researchers to explore the biotechnological potential of in future bioremediation processes.

摘要

最近,人们对利用酵母生产生物吸附材料的兴趣日益浓厚,因为酵母使用成本低,能适应各种条件,并且易于通过形态操控来获得更好的生物原材料。我们实验室之前的研究表明,一种非致病性单倍体酵母(子囊菌)对锰具有出色的生物吸附能力,动力学分析证明了这一点。对可溶性组分的鸟枪法/自下而上分析共鉴定出1257个分子,其中117种蛋白质在无锰条件下表达,69种仅在有锰条件下表达。在本文中,我们利用鸟枪法/自下而上分析的实验数据,首次对该酵母中的蛋白质-蛋白质相互作用(PPI)进行预测和筛选。我们还对该酵母蛋白质组中因过量锰离子应激而上调的71种蛋白质的生物学过程(BP)、分子功能(MF)和代谢途径进行了分类。大多数注释蛋白与氧化还原过程、代谢以及对氧化应激的反应有关。我们鉴定出了七个功能富集和42条代谢途径;在有锰存在的情况下,大多数蛋白质属于与代谢途径相关的途径(19种蛋白质),其次是次生代谢物的生物合成(10种蛋白质)。利用我们的数据,可以推断防御机制通过抗氧化蛋白的表达将锰的影响降至最低,从而在防御反应过程中实现调节。以前的研究没有以允许比较的方式考虑该属中的蛋白质相互作用。因此,本研究的结果具有创新性、高度相关性,并提供了对相互作用复合物和网络的描述,从而深入了解该酵母的细胞过程。总体而言,我们的数据将使研究人员能够在未来的生物修复过程中探索该酵母的生物技术潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/399b/7042463/5d5fd3879257/fmicb-11-00236-g001.jpg

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