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首页> 外文期刊>Molecular Microbiology >New insights into the role of CcmC, CcmD and CcmE in the haem delivery pathway during cytochrome c maturation by a complete mutational analysis of the conserved tryptophan-rich motif of CcmC
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New insights into the role of CcmC, CcmD and CcmE in the haem delivery pathway during cytochrome c maturation by a complete mutational analysis of the conserved tryptophan-rich motif of CcmC

机译:通过对CcmC的富含色氨酸的保守基序进行完整的突变分析,可以了解CcmC,CcmD和CcmE在细胞色素c成熟过程中的血红素传递途径中的作用的新见解

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摘要

Maturation of c-type cytochromes in Escherichia coli is a complex process requiring eight membrane proteins encoded by the ccmABCDEFGH operon. CcmE is a mediator of haem delivery. It binds haem transiently at a conserved histidine residue and releases it for directed transfer to apocytochrome c. CcmC, an integral membrane protein with six transmembrane helices, is necessary and sufficient to incorporate haem covalently into CcmE, CcmC contains a highly conserved tryptophan-rich motif, WGXXWXWD, in its second periplasmic loop. Here, we present the results of a systematic mutational analysis of this motif. Changes of the non-conserved T121 and W122 to A resulted in wild-type CcmC activity. Changes of the single amino acids W119A, G120A, W123A, W125I and D126A or of the spacing within the motif by deleting V124 (Delta V124) inhibited the covalent haem incorporation into CcmE. Enhanced expression of ccmD suppressed this mutant phenotype by increasing the amounts of CcmC and CcmE polypeptides in the membrane. The Delta V124 mutant showed the strongest defect of all single mutants. Mutants in which six residues of the tryptophan-rich motif were changed showed no residual CcmC activity. This phenotype was independent of the level of ccmD expression. Our results demonstrate the functional importance of the tryptophan-rich motif for haem transfer to CcmE. We propose that the three membrane proteins CcmC, CcmD and CcmE interact directly with each other, establishing a cytoplasm to periplasm haem delivery pathway for cytochrome c maturation. [References: 35]
机译:大肠杆菌中c型细胞色素的成熟是一个复杂的过程,需要由ccmABCDEFGH操纵子编码的八种膜蛋白。 CcmE是血红素传递的中介。它在一个保守的组氨酸残基上短暂结合血红素,并释放它以直接转移至脱细胞色素c。 CcmC是具有六个跨膜螺旋的完整膜蛋白,对于将血红素共价掺入CcmE是必要且足够的,CcmC在其第二周质环中包含高度保守的富含色氨酸的基序WGXXWXWD。在这里,我们介绍此主题的系统突变分析的结果。非保守的T121和W122变为A导致野生型CcmC活性。通过删除V124(ΔV124)改变单个氨基酸W119A,G120A,W123A,W125I和D126A或基序内的间隔会抑制共价血红素掺入CcmE。 ccmD的增强表达通过增加膜中CcmC和CcmE多肽的数量来抑制这种突变表型。 Delta V124突变体显示出所有单个突变体中最强的缺陷。富含色氨酸基序的六个残基发生了变化的突变体没有残留的CcmC活性。此表型与ccmD表达水平无关。我们的结果证明了富含色氨酸的基序对于血红素向CcmE转移的功能重要性。我们建议这三个膜蛋白CcmC,CcmD和CcmE彼此直接相互作用,建立细胞质到周质血红素传递途径的细胞色素c成熟。 [参考:35]

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