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多功能细胞色素 c:从老狗身上学到的新技巧。

Multifunctional Cytochrome c: Learning New Tricks from an Old Dog.

机构信息

Departamento de Química Inorgánica, Analítica y Química Física and INQUIMAE (CONICET-UBA), Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Ciudad Universitaria , Pab. 2, piso 1, Buenos Aires C1428EHA, Argentina.

Department of Pediatrics, Universitätsklinikum Freiburg , Mathildenstrasse 1, Freiburg 79106, Germany.

出版信息

Chem Rev. 2017 Nov 8;117(21):13382-13460. doi: 10.1021/acs.chemrev.7b00257. Epub 2017 Oct 13.

Abstract

Cytochrome c (cyt c) is a small soluble heme protein characterized by a relatively flexible structure, particularly in the ferric form, such that it is able to sample a broad conformational space. Depending on the specific conditions, interactions, and cellular localization, different conformations may be stabilized, which differ in structure, redox properties, binding affinities, and enzymatic activity. The primary function is electron shuttling in oxidative phosphorylation, and is exerted by the so-called native cyt c in the intermembrane mitochondrial space of healthy cells. Under pro-apoptotic conditions, however, cyt c gains cardiolipin peroxidase activity, translocates into the cytosol to engage in the intrinsic apoptotic pathway, and enters the nucleus where it impedes nucleosome assembly. Other reported functions include cytosolic redox sensing and involvement in the mitochondrial oxidative folding machinery. Moreover, post-translational modifications such as nitration, phosphorylation, and sulfoxidation of specific amino acids induce alternative conformations with differential properties, at least in vitro. Similar structural and functional alterations are elicited by biologically significant electric fields and by naturally occurring mutations of human cyt c that, along with mutations at the level of the maturation system, are associated with specific diseases. Here, we summarize current knowledge and recent advances in understanding the different structural, dynamic, and thermodynamic factors that regulate the primary electron transfer function, as well as alternative functions and conformations of cyt c. Finally, we present recent technological applications of this moonlighting protein.

摘要

细胞色素 c(cyt c)是一种小而可溶性的血红素蛋白,其结构相对灵活,特别是在三价铁形式下,使其能够采样广泛的构象空间。根据具体条件、相互作用和细胞定位,不同的构象可能会得到稳定,这些构象在结构、氧化还原性质、结合亲和力和酶活性方面存在差异。其主要功能是在氧化磷酸化中进行电子转移,并且由健康细胞线粒体内膜间隙中的所谓天然 cyt c 发挥作用。然而,在促凋亡条件下,cyt c 获得心磷脂过氧化物酶活性,易位到细胞质中参与内在凋亡途径,并进入细胞核,在细胞核中它阻碍核小体组装。其他报道的功能包括细胞溶质中的氧化还原感应和参与线粒体氧化折叠机制。此外,特定氨基酸的硝化、磷酸化和亚砜化等翻译后修饰会诱导具有不同特性的替代构象,至少在体外是这样。生物相关电场和人类 cyt c 的天然突变会引起类似的结构和功能改变,这些突变与成熟系统水平的突变一起与特定疾病相关。在这里,我们总结了当前对调节主要电子转移功能以及 cyt c 的替代功能和构象的不同结构、动态和热力学因素的理解的最新进展。最后,我们介绍了这种多功能蛋白的最新技术应用。

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