Department of Biochemistry, University of Oxford, South Parks Road, Oxford OX1 3QU, United Kingdom.
Metallomics. 2011 Apr;3(4):363-8. doi: 10.1039/c0mt00085j. Epub 2011 Jan 31.
The interaction of heme with the heme chaperone CcmE is central to our understanding of cytochrome c maturation, a complex post-translational process involving at least eight proteins in many Gram-negative bacteria and plant mitochondria. We have shown previously that Escherichia coli CcmE can interact with heme non-covalently in vitro, before forming a novel covalent histidine-heme bond, in a redox-sensitive manner. The function of CcmE is to bind heme in the periplasm before transferring it to apocytochromes c. In the absence of structural information on the complex of CcmE and heme, we have further characterized it by examining the binding of the soluble domain of CcmE (CcmE') to protoporphyrins containing metals other than Fe, namely Zn-, Sn-, Co- and Mn-protoporphyrin (PPIX). CcmE' demonstrated no affinity for the Zn- or Sn-containing protoporphyrins and low affinity for Mn(ii)-PPIX. High-affinity, reversible binding was, however, observed for Co(iii)-PPIX, which was highly sensitive to oxidation state as demonstrated by release of the ligand from the chaperone on reduction; no binding to Co(ii)-PPIX was observed. The non-covalent complex of CcmE' and Co(iii)-PPIX was characterized by non-denaturing mass spectrometry. The implications of these observations for the in vivo function of CcmE are discussed.
血红素与血红素伴侣蛋白 CcmE 的相互作用是我们理解细胞色素 c 成熟的核心,这是一个复杂的翻译后过程,涉及许多革兰氏阴性菌和植物线粒体中的至少八种蛋白质。我们之前已经表明,大肠杆菌 CcmE 可以在体外非共价地与血红素相互作用,然后以前形成一种新的共价组氨酸-血红素键,以氧化还原敏感的方式。CcmE 的功能是在将血红素转移到脱细胞细胞色素 c 之前,在周质中结合血红素。由于缺乏 CcmE 和血红素复合物的结构信息,我们通过检查可溶性 CcmE 结构域 (CcmE') 与除铁以外的其他金属(即锌、锡、钴和锰原卟啉 (PPIX))结合来进一步表征它。CcmE' 对锌或锡含量的原卟啉没有亲和力,对锰 (ii)-PPIX 的亲和力也很低。然而,对 Co(iii)-PPIX 观察到高亲和力、可逆结合,这对氧化态非常敏感,如通过还原从伴侣蛋白中释放配体所证明的那样;没有观察到 Co(ii)-PPIX 的结合。CcmE' 和 Co(iii)-PPIX 的非共价复合物通过非变性质谱进行了表征。讨论了这些观察结果对 CcmE 体内功能的影响。