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计算结构预测为铁氧化硫杆菌外膜蛋白 Cyc2 的电子转移提供了一个合理的机制。

Computational structure prediction provides a plausible mechanism for electron transfer by the outer membrane protein Cyc2 from Acidithiobacillus ferrooxidans.

机构信息

Department of Chemical Engineering, Columbia University in the City of New York, New York, New York, USA.

Department of Chemistry and Chemical Biology, Rutgers, The State University of New Jersey, Piscataway, New Jersey, USA.

出版信息

Protein Sci. 2021 Aug;30(8):1640-1652. doi: 10.1002/pro.4106. Epub 2021 May 25.

Abstract

Cyc2 is the key protein in the outer membrane of Acidithiobacillus ferrooxidans that mediates electron transfer between extracellular inorganic iron and the intracellular central metabolism. This cytochrome c is specific for iron and interacts with periplasmic proteins to complete a reversible electron transport chain. A structure of Cyc2 has not yet been characterized experimentally. Here we describe a structural model of Cyc2, and associated proteins, to highlight a plausible mechanism for the ferrous iron electron transfer chain. A comparative modeling protocol specific for trans membrane beta barrel (TMBB) proteins in acidophilic conditions (pH ~ 2) was applied to the primary sequence of Cyc2. The proposed structure has three main regimes: Extracellular loops exposed to low-pH conditions, a TMBB, and an N-terminal cytochrome-like region within the periplasmic space. The Cyc2 model was further refined by identifying likely iron and heme docking sites. This represents the first computational model of Cyc2 that accounts for the membrane microenvironment and the acidity in the extracellular matrix. This approach can be used to model other TMBBs which can be critical for chemolithotrophic microbial growth.

摘要

Cyc2 是嗜酸氧化亚铁硫杆菌外膜中的关键蛋白,介导细胞外无机铁与细胞内中心代谢之间的电子传递。这种细胞色素 c 是特异性的铁,并与周质蛋白相互作用,完成可逆的电子传递链。Cyc2 的结构尚未通过实验进行表征。在这里,我们描述了 Cyc2 及其相关蛋白的结构模型,以突出亚铁电子传递链的可能机制。针对嗜酸条件(pH~2)下的跨膜β桶(TMBB)蛋白,我们应用了一种特定的比较建模方案来分析 Cyc2 的一级序列。提出的结构有三个主要区域:暴露在低 pH 条件下的细胞外环、TMBB 和周质空间内的 N 端细胞色素样区域。通过确定可能的铁和血红素对接位点,对 Cyc2 模型进行了进一步细化。这是第一个考虑到膜微环境和细胞外基质酸度的 Cyc2 计算模型。该方法可用于对其他 TMBB 进行建模,这对化能自养微生物的生长至关重要。

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