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通过比较N-乙酰微过氧化物酶-8和一种合成的单组氨酸配位血红素肽揭示细胞色素c中共价血红素-蛋白质连接的可能作用。

A possible role for the covalent heme-protein linkage in cytochrome c revealed via comparison of N-acetylmicroperoxidase-8 and a synthetic, monohistidine-coordinated heme peptide.

作者信息

Cowley Aaron B, Lukat-Rodgers Gudrun S, Rodgers Kenton R, Benson David R

机构信息

Department of Chemistry, University of Kansas, Lawrence, Kansas 66045, USA.

出版信息

Biochemistry. 2004 Feb 17;43(6):1656-66. doi: 10.1021/bi035531p.

Abstract

N-Acetylmicroperoxidase-8 (1) contains heme and residues 14-21 of horse mitochondrial cytochrome c (cyt c). The two thioether bonds linking protein to heme in cyt c are present in 1, and the native axial ligand His-18 remains coordinated to iron. As an approach to probing structural or functional roles played by the double covalent heme-protein linkage in cyt c, we have initiated a study in which the properties of 1 are compared with those of a synthetic mono-His coordinated heme peptide containing a single covalent linkage (2). One consequence of the greater conformational restriction imposed on peptide conformation in 1 is that His-Fe(III) coordination is approximately 1.4 kcal/mol more favorable in 1 than in 2. This highlights a clear advantage conferred to cyt c by having two covalent heme-protein linkages rather than one: greater thermodynamic stability of the protein fold. EPR (11 K) and resonance Raman (298 K) studies reveal that 1 and 2 exhibit a thermal high-spin/low-spin ferric equilibrium but that low-spin character is considerably more pronounced in 1. In addition, the thioether 2-(methylthio)ethanol (MTE) coordinates 0.5 kcal/mol more strongly to 1 than to 2 in 60:40 H(2)O/CH(3)OH and only triggers the expected conversion of iron to the low-spin state characteristic of ferric cyt c in the case of 1. This demonstrates that the axial ligand field provided by an imidazole and a thioether is too weak to induce a high-spin to low-spin conversion in a ferric porphyrin. Our results suggest that a conformationally constrained double covalent heme-protein linkage, as exists in 1 and its parent protein cyt c, is an effective solution that nature has evolved to circumvent this limitation. We propose that the stronger His-Fe(III) coordination enabled by such a linkage serves to markedly enhance the effective ligand field strength of His-18. Our studies with 1 and 2 suggest that a double covalent linkage in cyt c may also enable energetically more favorable trans ligation of Met-80 than would be possible if only a single linkage were present. This would serve to further increase the stability of the protein fold and perhaps to increase the effective ligand field strength of Met-80 as well.

摘要

N-乙酰微过氧化物酶-8(1)含有血红素以及马线粒体细胞色素c(细胞色素c)的14至21位残基。细胞色素c中连接蛋白质与血红素的两个硫醚键在1中也存在,并且天然轴向配体His-18仍然与铁配位。作为探究细胞色素c中双共价血红素-蛋白质连接所起的结构或功能作用的一种方法,我们开展了一项研究,将1的性质与含有单个共价连接的合成单组氨酸配位血红素肽(2)的性质进行比较。1中对肽构象施加的更大构象限制的一个结果是,His-Fe(III)配位在1中比在2中更有利,大约高出1.4千卡/摩尔。这突出了细胞色素c具有两个共价血红素-蛋白质连接而非一个所带来的明显优势:蛋白质折叠具有更高的热力学稳定性。电子顺磁共振(11K)和共振拉曼(298K)研究表明,1和2表现出热高自旋/低自旋铁平衡,但低自旋特征在1中更为明显。此外,在60:40的H₂O/CH₃OH中,硫醚2-(甲硫基)乙醇(MTE)与1的配位比与2的配位强0.5千卡/摩尔,并且仅在1的情况下触发铁向细胞色素c铁的低自旋状态特征的预期转变。这表明由咪唑和硫醚提供的轴向配体场太弱,无法在铁卟啉中诱导高自旋向低自旋的转变。我们的结果表明,如1及其母体蛋白质细胞色素c中存在的构象受限双共价血红素-蛋白质连接是自然界进化出的规避此限制的有效解决方案。我们提出,这种连接所实现的更强的His-Fe(III)配位作用显著增强了His-18的有效配体场强度。我们对1和2的研究表明,如果细胞色素c中只有单个连接,那么双共价连接可能还能使Met-80的反式配位在能量上更有利。这将有助于进一步提高蛋白质折叠的稳定性,也许还能提高Met-80的有效配体场强度。

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