Suppr超能文献

处于高亲和力(R)状态的马脱氧血红蛋白的晶体结构。

The crystal structure of horse deoxyhaemoglobin trapped in the high-affinity (R) state.

作者信息

Wilson J, Phillips K, Luisi B

机构信息

Department of Chemistry, University of York, Heslington, UK.

出版信息

J Mol Biol. 1996 Dec 13;264(4):743-56. doi: 10.1006/jmbi.1996.0674.

Abstract

Co-operative oxygen binding by the vertebrate haemoglobins arises from an equilibrium between a quaternary structure with low affinity (T), favoured in the absence of ligand, and a high affinity form (R) adopted by the fully ligated protein. While R state haemoglobin has an oxygen affinity close to that of isolated subunits, the affinity of the T state is roughly 300-fold lower. The mechanism by which the T state restrains ligand binding, and the pathway of the quaternary transition, have been largely revealed by detailed crystallographic analyses of a number of haemoglobin molecules in the equilibrium states, as well as intermediate forms of the T state including partially ligated species. The ligation intermediates of the R state, however, have not been as well characterized structurally. We report here the crystal structure of one such intermediate species, namely, horse deoxyhaemoglobin in the R state, at 1.8 A resolution. While ligand binding in the T state may result in unfavourable stereochemistry in and around the haem-ligand complex, the more plastic R structure appears to accommodate equally well both liganded and ligand-free haem. Loss of ligand at the R state haem results in movements of the haem and shifts of the FG corners, which form characteristic intersubunit contacts that distinguish the quaternary states. The shifts are comparable in magnitude to the corresponding movements associated with de-ligation in the T state, although they differ in direction. These and other differences illustrate how the structural changes in the haem pocket are communicated to the subunit interfaces and how the movements that can occur in the R state may be impeded in the T state.

摘要

脊椎动物血红蛋白的协同氧结合源自低亲和力四级结构(T态)与高亲和力形式(R态)之间的平衡。T态在没有配体时更受青睐,而R态则由完全结合配体的蛋白质所采用。虽然R态血红蛋白的氧亲和力接近分离亚基的氧亲和力,但T态的亲和力大约低300倍。通过对处于平衡状态的多种血红蛋白分子以及包括部分结合配体的物种在内的T态中间形式进行详细的晶体学分析,T态抑制配体结合的机制以及四级转变途径已基本明晰。然而,R态的结合配体中间形式在结构上尚未得到很好的表征。我们在此报告了其中一种中间物种的晶体结构,即处于R态的马脱氧血红蛋白,分辨率为1.8埃。虽然T态中的配体结合可能会导致血红素 - 配体复合物及其周围出现不利的立体化学情况,但可塑性更强的R结构似乎能同样良好地容纳结合配体和未结合配体的血红素基团;R态血红素上配体的丢失会导致血红素基团发生移动以及FG转角移位,并形成区分四级状态的特征性亚基间接触。这些移位在幅度上与T态中去结合相关联的相应移动相当,尽管方向不同。这些差异以及其他差异说明了血红素口袋中的结构变化是如何传递到亚基界面的,以及R态中可能发生的移动在T态中是如何受到阻碍的。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验