周质间隙
铜
细菌
细胞质
大肠杆菌
生物化学
细胞生物学
生物
化学
微生物学
遗传学
基因
有机化学
作者
Jun-ichi Ishihara,Tomohiro Mekubo,Chikako Kusaka,Suguru Kondo,Ryotaro Oiko,Kensuke Igarashi,Hirofumi Aiba,Shu Ishikawa,Naotaka Ogasawara,Taku Oshima,Hiroki Takahashi
出处
期刊:BioSystems
[Elsevier]
日期:2023-07-14
卷期号:231: 104980-104980
被引量:2
标识
DOI:10.1016/j.biosystems.2023.104980
摘要
Copper is essential for life, but is toxic in excess. Copper homeostasis is achieved in the cytoplasm and the periplasm as a unique feature of Gram-negative bacteria. Especially, it has become clear the role of the periplasm and periplasmic proteins regarding whole-cell copper homeostasis. Here, we addressed the role of the periplasm and periplasmic proteins in copper homeostasis using a Systems Biology approach integrating experiments with models. Our analysis shows that most of the copper-bound molecules localize in the periplasm but not cytoplasm, suggesting that Escherichia coli utilizes the periplasm to sense the copper concentration in the medium and sequester copper ions. In particular, a periplasmic multi-copper oxidase CueO and copper-responsive transcriptional factor CusS contribute both to protection against Cu(I) toxicity and to incorporating copper into the periplasmic components/proteins. We propose that Gram-negative bacteria have evolved mechanisms to sense and store copper in the periplasm to expand their living niches.
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