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细胞色素c中血红素连接的功能作用。通过半合成用天然和非天然残基取代甲硫氨酸80的影响。

Functional role of heme ligation in cytochrome c. Effects of replacement of methionine 80 with natural and non-natural residues by semisynthesis.

作者信息

Wallace C J, Clark-Lewis I

机构信息

Department of Biochemistry, Dalhousie University Halifax, Nova Scotia, Canada.

出版信息

J Biol Chem. 1992 Feb 25;267(6):3852-61.

PMID:1310985
Abstract

The nature of the axial ligation to heme iron has been suggested to be the major determinant of the oxidation-reduction potential of a particular cytochrome, but natural cytochromes that vary significantly in E'm invariably differ from one another in many ways. We proposed to clarify this issue by engineering many different ligation patterns within the same basic molecule, mitochondrial cytochrome c. Since many of the potentially informative substitutions require non-coded amino acids, semisynthesis was the approach we chose, and solid-phase peptide synthesis was used to make a set of nin 39-residue peptides that have been incorporated by autocatalytic fragment religation into the structure of horse cytochrome c. An additional two analogues modified at this position were made by chemical modification of the whole protein. As well as looking at the effect on reduction potential, we examined the effect of varying the ligand sphere on the efficiency of the autocatalytic fragment religation reaction, on the conformation of cytochrome c, on its spectroscopic properties, and in promoting electron transfer between heme c and other redox centers. Substitute residues were chosen to put sulfur, selenium, oxygen, and nitrogen, or even no ligating atom at all in the place of methionine sulfur. We found both subtle and dramatic alterations in spectral properties, which were informative about changes in internal structure and stability brought about by the modifications and which may be useful in identifying novel natural ligation patterns. An unexpected finding was that alanine 80 cytochrome c acquires a hemoglobin-like spectrum, and binds O2 most effectively. Reduction potential changes of greater than 300 mV with nitrogen, greater than 400 mV with oxygen, and greater than 300 mV with thiol sulfur ligation were observed, confirming that variation of the ligand sphere is indeed the most effective way in which the protein coat may modulate the potential of the redox center it encloses. Finally, we obtained more evidence that this axial ligand plays an active role in electron transfer and discovered that histidine could be even more effective in this role.

摘要

轴向配体与血红素铁的结合性质被认为是特定细胞色素氧化还原电位的主要决定因素,但E'm值差异显著的天然细胞色素在许多方面也存在差异。我们提议通过在同一基本分子——线粒体细胞色素c内构建多种不同的配体模式来阐明这一问题。由于许多潜在的信息性取代需要非编码氨基酸,我们选择了半合成方法,并使用固相肽合成制备了一组九个39个残基的肽段,这些肽段通过自催化片段重新连接被整合到马细胞色素c的结构中。另外两个在此位置修饰的类似物是通过对整个蛋白质进行化学修饰制备的。除了研究对还原电位的影响外,我们还研究了改变配体球对自催化片段重新连接反应效率、细胞色素c构象、其光谱性质以及促进血红素c与其他氧化还原中心之间电子转移的影响。选择取代残基是为了用硫、硒、氧和氮,甚至完全不放置连接原子来取代甲硫氨酸的硫原子。我们发现光谱性质既有细微变化也有显著变化,这些变化有助于了解修饰引起的内部结构和稳定性变化,并且可能有助于识别新的天然配体模式。一个意外的发现是,丙氨酸80细胞色素c获得了类似血红蛋白的光谱,并且最有效地结合氧气。观察到用氮连接时还原电位变化大于300 mV,用氧连接时大于400 mV,用硫醇硫连接时大于300 mV,这证实了配体球的变化确实是蛋白质外壳调节其所包围的氧化还原中心电位的最有效方式。最后,我们获得了更多证据表明这种轴向配体在电子转移中起积极作用,并发现组氨酸在这一作用中可能更有效。

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