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细胞色素b5中血红素结合引起的结构和动态扰动。

Structural and dynamic perturbations induced by heme binding in cytochrome b5.

作者信息

Falzone C J, Wang Y, Vu B C, Scott N L, Bhattacharya S, Lecomte J T

机构信息

Department of Chemistry, The Pennsylvania State University, University Park, Pennsylvania 16802, USA.

出版信息

Biochemistry. 2001 Apr 17;40(15):4879-91. doi: 10.1021/bi002681g.

Abstract

The water-soluble domain of rat hepatic cytochrome b(5) undergoes marked structural changes upon heme removal. The solution structure of apocytochrome b(5) shows that the protein is partially folded in the absence of the heme group, exhibiting a stable module and a disordered heme-binding loop. The quality of the apoprotein structure in solution was improved with the use of heteronuclear NMR data. Backbone amide hydrogen exchange was studied to characterize cooperative units in the protein. It was found that this criterion distinguished the folded module from the heme-binding loop in the apoprotein, in contrast to the holoprotein. The osmolyte trimethylamine N-oxide (TMAO) did not affect the structure of the apoprotein in the disordered region. TMAO imparted a small stabilization consistent with an unfolded state effect correlating with the extent of buried surface area in the folded region of the native apoprotein. The failure of the osmolyte to cause large conformational shifts in the disordered loop supported the view that the specificity of the local sequence for the holoprotein fold was best developed with the stabilization of the native state through heme binding. To dissect the role of the heme prosthetic group in forcing the disordered region into the holoprotein conformation, the axial histidine belonging to the flexible loop (His63) was replaced with an alanine, and the structural properties of the protein with carbon-monoxide-ligated reduced iron were studied. The His63Ala substitution resulted in a protein with lower heme affinity but nevertheless capable of complete refolding. This indicated that the coordination bond was not necessary to establish the structural features of the holoprotein. In addition, the weak binding of the heme in this protein resulted in conformational shifts at a location distant from the binding site. The data suggested an uneven distribution of cooperative elements in the structure of the cytochrome.

摘要

大鼠肝细胞色素b(5)的水溶性结构域在血红素去除后会发生显著的结构变化。脱辅基细胞色素b(5)的溶液结构表明,该蛋白在没有血红素基团的情况下部分折叠,呈现出一个稳定的模块和一个无序的血红素结合环。利用异核核磁共振数据提高了溶液中脱辅基蛋白结构的质量。研究了主链酰胺氢交换以表征蛋白质中的协同单元。结果发现,与全蛋白相比,这一标准区分了脱辅基蛋白中折叠模块和血红素结合环。渗透剂三甲胺N-氧化物(TMAO)不影响脱辅基蛋白无序区域的结构。TMAO产生了小的稳定性,这与未折叠状态效应一致,该效应与天然脱辅基蛋白折叠区域中埋藏表面积的程度相关。渗透剂未能在无序环中引起大的构象变化,这支持了这样一种观点,即通过血红素结合稳定天然状态,全蛋白折叠的局部序列特异性得到了最佳发展。为了剖析血红素辅基在迫使无序区域形成全蛋白构象中的作用,将属于柔性环的轴向组氨酸(His63)替换为丙氨酸,并研究了一氧化碳结合还原铁的蛋白质的结构性质。His63Ala取代产生了一种血红素亲和力较低但仍能完全重折叠的蛋白质。这表明配位键对于建立全蛋白结构特征不是必需的。此外,该蛋白中血红素的弱结合导致在远离结合位点的位置发生构象变化。数据表明细胞色素结构中协同元件分布不均。

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