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PsychrophilicPseudomonas helmanticensisproteome under simulated cold stress

机译:模拟冷胁迫下的嗜冷假单胞菌蠕虫蛋白质组

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摘要

Himalayan mountains are distinctly characterized for their unique climatic and topographic variations; therefore, unraveling the cold-adaptive mechanisms and processes of native life forms is always being a matter of concern for scientific community. In this perspective, the proteomic response of psychrophilic diazotrophPseudomonas helmanticensiswas studied towards low-temperature conditions. LC-MS-based analysis revealed that most of the differentially expressed proteins providing cold stress resistance were molecular chaperons and cold shock proteins. Enzymes involved in proline, polyamines, unsaturated fatty acid biosynthesis, ROS-neutralizing pathways, and arginine degradation were upregulated. However, proteins involved in the oxidative pathways of energy generation were severalfold downregulated. Besides these, the upregulation of uncharacterized proteins at low temperature suggests the expression of novel proteins byP. helmanticensisfor cold adaptation. Protein interaction network ofP. helmanticensisunder cold revealed that Tif, Tig, DnaK, and Adk were crucial proteins involved in cold adaptation. Conclusively, this study documents the proteome and protein-protein interaction network of the Himalayan psychrophilicP. helmanticensisunder cold stress.
机译:喜马拉雅山脉以其独特的气候和地形变化而著称;因此,揭示本土生命形式的寒冷适应机制和过程一直是科学界关注的问题。从这个角度来看,研究了嗜冷重氮菌假单胞菌(Pseudomonas helmanticensis)在低温条件下的蛋白质组学响应。基于LC-MS的分析表明,大多数提供抗冷胁迫的差异表达蛋白是分子伴侣蛋白和冷休克蛋白。参与脯氨酸、多胺、不饱和脂肪酸生物合成、ROS中和途径和精氨酸降解的酶上调。然而,参与能量产生的氧化途径的蛋白质被下调了几倍。除此之外,低温下未表征蛋白的上调表明了新蛋白的表达。蠕虫用于寒冷适应。P的蛋白质相互作用网络。冷下发现Tif、Tig、DnaK和Adk是参与冷适应的关键蛋白。最终,本研究记录了喜马拉雅嗜冷P的蛋白质组和蛋白质-蛋白质相互作用网络。蠕虫在冷胁迫下。

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