Sharp R E, Chapman S K
Johnson Research Foundation, Department of Biochemistry and Biophysics, University of Pennsylvania, Philadelphia, PA 19104, USA.
Biochim Biophys Acta. 1999 Jul 13;1432(2):143-58. doi: 10.1016/s0167-4838(99)00109-0.
Protein-mediated electron transfer is a key process in nature. Many of the proteins involved in such electron transfers are complex and contain a number of redox-active cofactors. The very complexity of these multi-centre redox proteins has made it difficult to fully understand the various electron transfer events they catalyse. This is sometimes because the electron transfer steps themselves are gated or coupled to other processes such as proton transfer. However, with the molecular structures of many of these proteins now available it is possible to probe these electron transfer reactions at the molecular level. It is becoming apparent that many of these multi-centre redox proteins have rather subtle and elegant ways for regulating electron transfer. The purpose of this article is to illustrate how nature has used different approaches to control electron transfer in a number of different systems. Illustrative examples include: thermodynamic control of electron transfer in flavocytochromes b(2) and P450 BM3; a novel control mechanism involving calmodulin-binding-dependent electron transfer in neuronal nitric oxide synthase; the probable gating of electron transfer by ATP hydrolysis in nitrogenase; conformational gating of electron transfer in cytochrome cd(1); the regulation of electron transfer by protein dynamics in the cytochrome bc(1) complex; and finally the coupling of electron transfer to proton transfer in cytochrome c oxidase.
蛋白质介导的电子转移是自然界中的一个关键过程。许多参与此类电子转移的蛋白质都很复杂,并且含有多种氧化还原活性辅因子。这些多中心氧化还原蛋白的复杂性使得人们难以完全理解它们所催化的各种电子转移事件。这有时是因为电子转移步骤本身受到门控或与其他过程(如质子转移)耦合。然而,随着现在许多此类蛋白质的分子结构已经可得,在分子水平上探究这些电子转移反应成为可能。越来越明显的是,许多这些多中心氧化还原蛋白具有相当微妙和巧妙的调节电子转移的方式。本文的目的是说明自然界如何在许多不同系统中使用不同方法来控制电子转移。示例包括:黄素细胞色素b(2)和P450 BM3中电子转移的热力学控制;神经元型一氧化氮合酶中涉及钙调蛋白结合依赖性电子转移的新型控制机制;固氮酶中ATP水解可能对电子转移的门控作用;细胞色素cd(1)中电子转移的构象门控;细胞色素bc(1)复合物中蛋白质动力学对电子转移的调节;以及最后细胞色素c氧化酶中电子转移与质子转移的耦合。