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(2/2)截断的血红蛋白:在体内和人类发病机制中的非常规结构和功能作用。

Truncated (2/2) hemoglobin: Unconventional structures and functional roles in vivo and in human pathogenesis.

机构信息

Department of Biosciences, University of Milano, Milano, Italy.

Department of Physics, University of Genova, Genova, Italy.

出版信息

Mol Aspects Med. 2022 Apr;84:101049. doi: 10.1016/j.mam.2021.101049. Epub 2021 Nov 12.

Abstract

Truncated hemoglobins (trHbs) build a sub-class of the globin family, found in eubacteria, cyanobacteria, unicellular eukaryotes, and in higher plants; among these, selected human pathogens are found. The trHb fold is based on a 2/2 α-helical sandwich, consisting of a simplified and reduced-size version of the classical 3/3 α-helical sandwich of vertebrate and invertebrate globins. Phylogenetic analysis indicates that trHbs further branch into three groups: group I (or trHbN), group II (or trHbO), and group III (or trHbP), each group being characterized by specific structural features. Among these, a protein matrix tunnel, or a cavity system implicated in diatomic ligand diffusion through the protein matrix, is typical of group I and group II, respectively. In general, a highly intertwined network of hydrogen bonds stabilizes the heme bound ligand, despite variability of the heme distal residues in the different trHb groups. Notably, some organisms display genes from more than one trHb group, suggesting that trHbN, trHbO, and trHbP may support different functions in vivo, such as detoxification of reactive nitrogen and oxygen species, respiration, oxygen storage/sensoring, thus aiding survival of an invading microorganism. Here, structural features and proposed functions of trHbs from human pathogens are reviewed.

摘要

截断血红蛋白 (trHb) 构成了球蛋白家族的一个亚类,存在于真细菌、蓝细菌、单细胞真核生物和高等植物中;其中发现了一些选定的人类病原体。trHb 折叠基于 2/2 α-螺旋夹心结构,由脊椎动物和无脊椎动物球蛋白的经典 3/3 α-螺旋夹心的简化和缩小版本组成。系统发育分析表明,trHb 进一步分为三组:第 I 组(或 trHbN)、第 II 组(或 trHbO)和第 III 组(或 trHbP),每组都具有特定的结构特征。其中,一个蛋白质基质隧道或空腔系统与通过蛋白质基质扩散的双原子配体有关,分别是第 I 组和第 II 组的特征。一般来说,尽管不同 trHb 组的血红素远端残基存在可变性,但高度交织的氢键网络稳定了结合在血红素上的配体。值得注意的是,一些生物体显示出来自不止一个 trHb 组的基因,这表明 trHbN、trHbO 和 trHbP 可能在体内支持不同的功能,例如对活性氮和氧物种的解毒、呼吸、氧气储存/传感,从而帮助入侵的微生物存活。本文综述了来自人类病原体的 trHb 的结构特征和提出的功能。

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