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专性草酸盐降解菌的蛋白质组动力学

Proteome Dynamics of the Specialist Oxalate Degrader .

作者信息

Ellis Melissa E, Mobley James A, Holmes Ross P, Knight John

机构信息

Department of Urology, University of Alabama at Birmingham, Birmingham, AL, USA.

出版信息

J Proteomics Bioinform. 2016;9(1):19-24. doi: 10.4172/jpb.1000384.

Abstract

is a unique intestinal organism that relies on oxalate degradation to meet most of its energy and carbon needs. A lack of colonization is a risk factor for calcium oxalate kidney stone disease. The release of the genome sequence of has provided an opportunity to increase our understanding of the biology of . This study used mass spectrometry based shotgun proteomics to examine changes in protein levels associated with the transition of growth from log to stationary phase. Of the 1867 unique protein coding genes in the genome of strain OxCC13, 1822 proteins were detected, which is at the lower end of the range of 1500-7500 proteins found in free-living bacteria. From the protein datasets presented here it is clear that contains a repertoire of metabolic pathways expected of an intestinal microbe that permit it to survive and adapt to new environments. Although further experimental testing is needed to confirm the physiological and regulatory processes that mediate adaptation with nutrient shifts, the protein datasets presented here can be used as a reference for studying proteome dynamics under different conditions and have significant potential for hypothesis development.

摘要

是一种独特的肠道微生物,依靠草酸降解来满足其大部分能量和碳需求。缺乏定殖是草酸钙肾结石疾病的一个风险因素。 基因组序列的发布为增进我们对 生物学的理解提供了一个机会。本研究使用基于质谱的鸟枪法蛋白质组学来检测与从对数生长期到稳定期生长转变相关的蛋白质水平变化。在 菌株OxCC13基因组中的1867个独特蛋白质编码基因中,检测到了1822种蛋白质,这处于自由生活细菌中发现的1500 - 7500种蛋白质范围的下限。从这里呈现的蛋白质数据集中可以清楚地看出, 包含一系列肠道微生物预期的代谢途径,使其能够在新环境中生存和适应。尽管需要进一步的实验测试来确认介导对营养变化适应的生理和调节过程,但这里呈现的 蛋白质数据集可作为研究不同条件下蛋白质组动态变化的参考,并且在假设发展方面具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10e3/4764995/4b596a5a16cd/nihms758057f1.jpg

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