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通过β-折叠链间的水介导氢键来适应非保守的内部突变:人源和鼠源 B 型(线粒体)细胞色素 b5 的比较。

Accommodating a nonconservative internal mutation by water-mediated hydrogen bonding between β-sheet strands: a comparison of human and rat type B (mitochondrial) cytochrome b5.

机构信息

Department of Molecular Biosciences, University of Kansas, Lawrence, Kansas 66045, USA.

出版信息

Biochemistry. 2011 Jun 21;50(24):5544-54. doi: 10.1021/bi2004729. Epub 2011 May 26.

DOI:10.1021/bi2004729
PMID:21574570
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4484759/
Abstract

Mammalian type B (mitochondrial) b(5) cytochromes exhibit greater amino acid sequence diversity than their type A (microsomal) counterparts, as exemplified by the type B proteins from human (hCYB5B) and rat (rCYB5B). The comparison of X-ray crystal structures of hCYB5B and rCYB5B reported herein reveals a striking difference in packing involving the five-strand β-sheet, which can be attributed to fully buried residue 21 in strand β4. The greater bulk of Leu21 in hCYB5B in comparison to that of Thr21 in rCYB5B results in a substantial displacement of the first two residues in β5, and consequent loss of two of the three hydrogen bonds between β5 and β4. Hydrogen bonding between the residues is instead mediated by two well-ordered, fully buried water molecules. In a 10 ns molecular dynamics simulation, one of the buried water molecules in the hCYB5B structure exchanged readily with solvent via intermediates having three water molecules sandwiched between β4 and β5. When the buried water molecules were removed prior to a second 10 ns simulation, β4 and β5 formed persistent hydrogen bonds identical to those in rCYB5B, but the Leu21 side chain was forced to adopt a rarely observed conformation. Despite the apparently greater ease of access of water to the interior of hCYB5B than of rCYB5B suggested by these observations, the two proteins exhibit virtually identical stability, dynamic, and redox properties. The results provide new insight into the factors stabilizing the cytochrome b(5) fold.

摘要

哺乳动物 B 型(线粒体)细胞色素 b(5)的氨基酸序列多样性大于其 A 型(微粒体)对应物,例如人(hCYB5B)和大鼠(rCYB5B)的 B 型蛋白。本文报道的 hCYB5B 和 rCYB5B 的 X 射线晶体结构比较显示,涉及五股β-折叠的包装存在明显差异,这可以归因于β4 股完全埋藏的残基 21。与 rCYB5B 中的 Thr21 相比,hCYB5B 中的 Leu21 体积更大,导致β5 的前两个残基发生实质性位移,从而丧失了β5 和β4 之间的三个氢键中的两个。残基之间的氢键通过两个有序的、完全埋藏的水分子来介导。在 10 ns 的分子动力学模拟中,hCYB5B 结构中的一个埋藏水分子通过中间体与溶剂迅速交换,其中三个水分子夹在β4 和β5 之间。当在第二个 10 ns 模拟之前去除埋藏水分子时,β4 和β5 形成与 rCYB5B 相同的持久氢键,但 Leu21 侧链被迫采用很少观察到的构象。尽管这些观察结果表明,水更容易进入 hCYB5B 的内部,但这两种蛋白质实际上表现出几乎相同的稳定性、动态性和氧化还原性质。结果为稳定细胞色素 b(5)折叠的因素提供了新的见解。

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