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Q 环中的羧基末端插入对于大肠杆菌细胞色素 bd-I 的功能是必需的。

The carboxy-terminal insert in the Q-loop is needed for functionality of Escherichia coli cytochrome bd-I.

机构信息

Department of Molecular Cell Biology, Amsterdam Institute for Molecules, Medicines and Systems, Faculty of Sciences, Vrije Universiteit Amsterdam, De Boelelaan 1108, 1081 HZ Amsterdam, the Netherlands.

Department of Biochemistry, University of Illinois, 600 S. Mathews Avenue, Urbana, IL 61801, United States.

出版信息

Biochim Biophys Acta Bioenerg. 2020 Jun 1;1861(5-6):148175. doi: 10.1016/j.bbabio.2020.148175. Epub 2020 Feb 12.

Abstract

Cytochrome bd, a component of the prokaryotic respiratory chain, is important under physiological stress and during pathogenicity. Electrons from quinol substrates are passed on via heme groups in the CydA subunit and used to reduce molecular oxygen. Close to the quinol binding site, CydA displays a periplasmic hydrophilic loop called Q-loop that is essential for quinol oxidation. In the carboxy-terminal part of this loop, CydA from Escherichia coli and other proteobacteria harbors an insert of ~60 residues with unknown function. In the current work, we demonstrate that growth of the multiple-deletion strain E. coli MB43∆cydA (∆cydA∆cydB∆appB∆cyoB∆nuoB) can be enhanced by transformation with E. coli cytochrome bd-I and we utilize this system for assessment of Q-loop mutants. Deletion of the cytochrome bd-I Q-loop insert abolished MB43∆cydA growth recovery. Swapping the cytochrome bd-I Q-loop for the Q-loop from Geobacillus thermodenitrificans or Mycobacterium tuberculosis CydA, which lack the insert, did not enhance the growth of MB43∆cydA, whereas swapping for the Q-loop from E. coli cytochrome bd-II recovered growth. Alanine scanning experiments identified the cytochrome bd-I Q-loop insert regions Ile-Met, Gln-Asp, Tyr-Leu, and Thr-Ile as important for enzyme functionality. Those mutants that completely failed to recover growth of MB43∆cydA also lacked oxygen consumption activity and heme absorption peaks. Moreover, we were not able to isolate cytochrome bd-I from these inactive mutants. The results indicate that the cytochrome bd Q-loop exhibits low plasticity and that the Q-loop insert in E. coli is needed for complete, stable, assembly of cytochrome bd-I.

摘要

细胞色素 bd 是原核呼吸链的一个组成部分,在生理应激和致病性期间很重要。来自醌底物的电子通过 CydA 亚基中的血红素基团传递,并用于还原分子氧。在靠近醌结合位点的地方,CydA 显示出一个称为 Q-环的周质亲水环,对于醌氧化是必不可少的。在这个环的羧基末端部分,来自大肠杆菌和其他变形菌的 CydA 具有一个未知功能的约 60 个残基的插入物。在当前的工作中,我们证明了大肠杆菌 MB43∆cydA(∆cydA∆cydB∆appB∆cyoB∆nuoB)的多缺失菌株的生长可以通过转化为大肠杆菌细胞色素 bd-I 来增强,并且我们利用该系统评估 Q-环突变体。细胞色素 bd-I 的 Q-环插入物的缺失消除了 MB43∆cydA 的生长恢复。用缺乏插入物的 Geobacillus thermodenitrificans 或 Mycobacterium tuberculosis CydA 的细胞色素 bd-I Q-环取代,不能增强 MB43∆cydA 的生长,而用大肠杆菌细胞色素 bd-II 的 Q-环取代则恢复了生长。丙氨酸扫描实验确定细胞色素 bd-I Q-环插入物的 Ile-Met、Gln-Asp、Tyr-Leu 和 Thr-Ile 区域对于酶功能很重要。那些完全无法恢复 MB43∆cydA 生长的突变体也缺乏氧消耗活性和血红素吸收峰。此外,我们无法从这些无活性的突变体中分离出细胞色素 bd-I。结果表明,细胞色素 bd-Q 环表现出低可塑性,并且大肠杆菌中的 Q-环插入物对于细胞色素 bd-I 的完整、稳定组装是必需的。

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