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大肠杆菌和牛心线粒体F0F1 ATP合酶多肽的交叉重组研究。

Cross-reconstitution studies with polypeptides of Escherichia coli and bovine heart mitochondrial F0F1 ATP synthase.

作者信息

Zanotti F, Guerrieri F, Deckers-Hebestreit G, Fiermonte M, Altendorf K, Papa S

机构信息

Institute of Medical Biochemistry and Chemistry, University of Bari, Italy.

出版信息

Eur J Biochem. 1994 Jun 15;222(3):733-41. doi: 10.1111/j.1432-1033.1994.tb18919.x.

Abstract

To characterize the role of supernumerary subunits of the mammalian F0F1 ATP synthase, cross-reconstitution of mitochondrial and bacterial F0F1 complexes has been carried out. Escherichia coli F1 (EcF1) can be reconstituted with F1-stripped everted membranes of E. coli (UPEc) and of bovine heart mitochondria (USMP). Bovine heart mitochondrial F1 (BHF1) can also be reconstituted with both membranes. Both EcF1 and BHF1, when reconstituted with UPEc, exhibited oligomycin-insensitive ATP-hydrolase activity. Subunits of the mammalian F0, in particular F0I-PVP protein, F6 and oligomycin-sensitivity-conferring protein (OSCP) conferred oligomycin sensitivity to the catalytic activity of EcF1 or BHF1 reconstituted with UPEc. Reaction of N,N'-dicyclohexylcarbodiimide and development of inhibition of passive H+ conduction was, in UPEc, considerably slower and exhibited a lower apparent affinity than in USMP. The ATP hydrolase activity of UPEc+EcF1 or UPEc+BHF1 was, also, less sensitive to inhibition by N,N'-dicyclohexylcarbodiimide than USMP+EcF1 or USMP+BHF1. Addition of mitochondrial F0I-PVP to UPEc enhanced the sensitivity of H+ conduction to oligomycin. F0I-PVP and OSCP added to UPEc, promoted inhibition by N,N'-dicyclohexylcarbodiimide of passive H+ conduction and increased its binding affinity to subunit c of E. coli F0. The presence of F0I-PVP and OSCP also promoted inhibition by N,N'-dicyclohexylcarbodiimide of the ATP-hydrolase activity of EcF1 or BHF1 reconstituted with UPEc.

摘要

为了阐明哺乳动物F0F1ATP合酶多余亚基的作用,已进行了线粒体和细菌F0F1复合物的交叉重组。大肠杆菌F1(EcF1)可与大肠杆菌的F1去除的外翻膜(UPEc)以及牛心线粒体的F1去除的外翻膜(USMP)重组。牛心线粒体F1(BHF1)也可与这两种膜重组。EcF1和BHF1在用UPEc重组时,均表现出对寡霉素不敏感的ATP水解酶活性。哺乳动物F0的亚基,特别是F0I-PVP蛋白、F6和赋予寡霉素敏感性的蛋白(OSCP),赋予了用UPEc重组的EcF1或BHF1的催化活性寡霉素敏感性。在UPEc中,N,N'-二环己基碳二亚胺的反应和被动H+传导抑制的发展比在USMP中慢得多,并且表现出较低的表观亲和力。UPEc+EcF1或UPEc+BHF1的ATP水解酶活性对N,N'-二环己基碳二亚胺抑制的敏感性也低于USMP+EcF1或USMP+BHF1。向UPEc中添加线粒体F0I-PVP增强了H+传导对寡霉素的敏感性。添加到UPEc中的F0I-PVP和OSCP促进了N,N'-二环己基碳二亚胺对被动H+传导的抑制,并增加了其与大肠杆菌F0亚基c的结合亲和力。F0I-PVP和OSCP的存在还促进了N,N'-二环己基碳二亚胺对用UPEc重组的EcF1或BHF1的ATP水解酶活性的抑制。

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