Feissner Robert E, Richard-Fogal Cynthia L, Frawley Elaine R, Loughman Jennifer A, Earley Keith W, Kranz Robert G
Washington University, Department of Biology, Campus Box 1137, 1 Brookings Drive, St. Louis, MO 63130, USA.
Mol Microbiol. 2006 May;60(3):563-77. doi: 10.1111/j.1365-2958.2006.05132.x.
Genetic analysis has indicated that the system II pathway for c-type cytochrome biogenesis in Bordetella pertussis requires at least four biogenesis proteins (CcsB, CcsA, DsbD and CcsX). In this study, the eight genes (ccmA-H) associated with the system I pathway in Escherichia coli were deleted. Using B. pertussis cytochrome c4 as a reporter for cytochromes c assembly, it is demonstrated that a single fused ccsBA polypeptide can replace the function of the eight system I genes in E. coli. Thus, the CcsB and CcsA membrane complex of system II is likely to possess the haem delivery and periplasmic cytochrome c-haem ligation functions. Using recombinant system II and system I, both under control of IPTG, we have begun to study the capabilities and characteristics of each system in the same organism (E. coli). The ferrochelatase inhibitor N-methylprotoporphyrin was used to modulate haem levels in vivo and it is shown that system I can use endogenous haem at much lower levels than system II. Additionally, while system I encodes a covalently bound haem chaperone (holo-CcmE), no covalent intermediate has been found in system II. It is shown that this allows system I to use holo-CcmE as a haem reservoir, a capability system II does not possess.
遗传分析表明,百日咳博德特氏菌中c型细胞色素生物合成的系统II途径至少需要四种生物合成蛋白(CcsB、CcsA、DsbD和CcsX)。在本研究中,大肠杆菌中与系统I途径相关的八个基因(ccmA-H)被删除。以百日咳博德特氏菌细胞色素c4作为细胞色素c组装的报告分子,结果表明单个融合的ccsBA多肽可以替代大肠杆菌中八个系统I基因的功能。因此,系统II的CcsB和CcsA膜复合物可能具有血红素传递和周质细胞色素c-血红素连接功能。利用在IPTG控制下的重组系统II和系统I,我们已经开始研究同一生物体(大肠杆菌)中每个系统的能力和特性。使用铁螯合酶抑制剂N-甲基原卟啉来调节体内血红素水平,结果表明系统I能够在比系统II低得多的水平下利用内源性血红素。此外,虽然系统I编码一种共价结合的血红素伴侣(全CcmE),但在系统II中未发现共价中间体。结果表明,这使得系统I能够将全CcmE用作血红素库,而系统II不具备这种能力。