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首页> 外文期刊>Proteins: Structure, Function, and Genetics >Protein--protein docking of electron transfer complexes: cytochrome c oxidase and cytochrome c.
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Protein--protein docking of electron transfer complexes: cytochrome c oxidase and cytochrome c.

机译:电子转移复合物的蛋白质-蛋白质对接:细胞色素c氧化酶和细胞色素c。

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Electron transferring protein complexes form only transiently and the crystal structures of electron transfer protein--protein complexes involving cytochrome c could so far be determined only for the pairs of yeast cytochrome c peroxidase (CcP) with iso-1-cytochrome c (iso-1-cyt c) and with horse heart cytochrome c (cyt c). This article presents models from computational docking for complexes of cytochrome c oxidase (COX) from Paracoccus denitrificans with horse heart cytochrome c, and with its physiological counterpart cytochrome c552 (c552). Initial docking is performed with the FTDOCK program, which permits an exhaustive search of translational and rotational space. A filtering procedure is then applied to reduce the number of complexes to a manageable number. In a final step of structural and energetic refinement, the complexes are optimized by rigid-body energy minimization with the molecular mechanics package CHARMM. This methodology was first tested on the CcP:iso-1-cyt c complex, in which the complex with the lowest CHARMM energy has an RMSD from the crystal structure of only 1.8 A (C(alpha) carbon atoms). Notably, the crystal conformation has an even lower energy. The same procedure was then applied to COX:cyt c and COX:c552. The lowest-energy COX:cyt c complex is very similar to a docking model previously described for the complex of bovine cytochrome c oxidase with horse heart cytochrome c. For the COX:c552 complex, cytochrome c552 is found in two different orientations, depending on whether it is docked against COX from a two-subunit or from a four-subunit crystal structure, respectively. Both conformations are discussed critically in the light of the available experimental data. Copyright 2002 Wiley-Liss, Inc.
机译:电子转移蛋白复合物仅瞬时形成,到目前为止,只能确定具有异-1-细胞色素c(iso-1)的酵母细胞色素c过氧化物酶(CcP)对的电子转移蛋白-涉及细胞色素c的蛋白质复合物的晶体结构-cyt c)和带有马心脏的细胞色素c(cyt c)。本文介绍了来自对接副球菌细胞色素c氧化酶(COX)与马心脏细胞色素c及其生理对应的细胞色素c552(c552)的复合物的计算对接模型。初始对接是通过FTDOCK程序执行的,该程序允许详尽搜索平移和旋转空间。然后应用过滤程序将复合物的数量减少到可管理的数量。在结构和能量优化的最后一步中,通过使用分子力学软件包CHARMM使刚体能量最小化来优化配合物。此方法首先在CcP:iso-1-cyt c配合物上进行了测试,其中具有最低CHARMM能量的配合物具有仅1.8 A(Cα碳原子)的晶体结构的RMSD。值得注意的是,晶体构象具有甚至更低的能量。然后将相同的过程应用于COX:cyt c和COX:c552。最低能量的COX:cyt c复合物非常类似于先前描述的牛细胞色素c氧化酶与马心脏细胞色素c的复合物的对接模型。对于COX:c552复合物,细胞色素c552处于两个不同的方向,具体取决于它是分别靠着两个亚基还是来自四个亚基的晶体结构与COX对接。根据现有的实验数据,对两种构型进行了严格的讨论。版权所有2002 Wiley-Liss,Inc.

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