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嗜硫还原地杆菌三血红素细胞色素的电子顺磁共振表征

Electron Paramagnetic Resonance Characterization of the Triheme Cytochrome from Geobacter sulfurreducens.

作者信息

Ponomarenko Nina, Niklas Jens, Pokkuluri P Raj, Poluektov Oleg, Tiede David M

出版信息

Biochemistry. 2018 Mar 20;57(11):1722-1732. doi: 10.1021/acs.biochem.7b00917. Epub 2018 Mar 6.

Abstract

Periplasmic cytochrome A (PpcA) is a representative of a broad class of multiheme cytochromes functioning as protein "nanowires" for storage and extracellular transfer of multiple electrons in the δ-proteobacterium Geobacter sulfurreducens. PpcA contains three bis-His coordinated hemes held in a spatial arrangement that is highly conserved among the multiheme cytochromes c and c families, carries low potential hemes, and is notable for having one of the lowest number of amino acids utilized to maintain a characteristic protein fold and site-specific heme function. Low temperature X-band electron paramagnetic resonance (EPR) spectroscopy has been used to characterize the electronic configuration of the Fe(III) and the ligation mode for each heme. The three sets of EPR signals are assigned to individual hemes in the three-dimensional crystal structure. The relative energy levels of the Fe(III) 3d orbitals for individual hemes were estimated from the principal g-values. The observed g-tensor anisotropy was used as a probe of electronic structure of each heme, and differences were determined by specifics of axial ligation. To ensure unambiguous assignment of highly anisotropic low-spin (HALS) signal to individual hemes, EPR analyses of iron atom electronic configurations have been supplemented with investigation of porphyrin macrocycles by one-dimensional H NMR chemical shift patterns for the methyl substituents. Within optimized geometry of hemes in PpcA, the magnetic interactions between hemes were found to be minimal, similar to the c family of tetraheme cytochromes.

摘要

周质细胞色素A(PpcA)是一大类多血红素细胞色素的代表,在嗜硫地杆菌中作为蛋白质“纳米线”发挥作用,用于多个电子的储存和细胞外转移。PpcA包含三个由双组氨酸配位的血红素,其空间排列在多血红素细胞色素c和c家族中高度保守,携带低电位血红素,并且以维持特征性蛋白质折叠和位点特异性血红素功能所需的氨基酸数量最少而著称。低温X波段电子顺磁共振(EPR)光谱已用于表征每个血红素的Fe(III)电子构型和配位模式。三组EPR信号被指定到三维晶体结构中的各个血红素。根据主要g值估计各个血红素的Fe(III)3d轨道的相对能级。观察到的g张量各向异性被用作每个血红素电子结构的探针,差异由轴向配位的细节决定。为了确保将高度各向异性的低自旋(HALS)信号明确分配给各个血红素,通过甲基取代基的一维H NMR化学位移模式对卟啉大环进行研究,对铁原子电子构型的EPR分析进行了补充。在PpcA中血红素的优化几何结构内,发现血红素之间的磁相互作用最小,类似于四血红素细胞色素的c家族。

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