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膜之间的能量转换。内膜蛋白托蛋白(TonB)在体内可与外膜受体铁摄取蛋白A(FepA)发生化学交联。

Energy transduction between membranes. TonB, a cytoplasmic membrane protein, can be chemically cross-linked in vivo to the outer membrane receptor FepA.

作者信息

Skare J T, Ahmer B M, Seachord C L, Darveau R P, Postle K

机构信息

Department of Microbiology, Washington State University, Pullman 99164.

出版信息

J Biol Chem. 1993 Aug 5;268(22):16302-8.

PMID:8344918
Abstract

TonB, a cytoplasmic membrane protein, couples cytoplasmic membrane protonmotive force to active transport across the outer membrane of Escherichia coli. In vivo cross-linking studies were initiated to analyze TonB interactions with other cell envelope proteins. Four TonB-specific cross-linked complexes were detected with apparent molecular masses of 195, 77, 59, and 43.5 kDa. The 195-kDa complex was shown to contain both TonB and FepA, the outer membrane receptor for the siderophore enterochelin. The 195-kDa complex is absent in strains missing either TonB or FepA and can be detected by either TonB-specific or FepA-specific monoclonal antibodies. This is the first direct in vivo evidence that TonB can span the periplasmic space to interact physically with outer membrane receptors. Consistent with that observation, the outer membrane protease OmpT was shown to play a role in TonB turnover, both in the presence and absence of ExbB results in the rapid degradation of TonB. The absence of OmpT could be used to stabilize TonB in an exbB::Tn10 strain such that steady state levels of TonB protein are identical to a wild-type strain. Under those conditions, the absence of ExbB results in greatly reduced TonB activity, indicating that ExbB plays a direct role in energy transduction and probably secondarily protects TonB protein from proteolysis. The 59-kDa complex was absent in an exbB::Tn10 strain, suggesting either that ExbB is in the complex with TonB or that ExbB is required to form the 59-kDa complex. A tolQ nonsense mutation had no effect on the cross-linking profile observed, confirming that its participation in TonB-dependent phenomena is minor and most likely the result of evolutionary cross-talk.

摘要

托蛋白B是一种细胞质膜蛋白,它将细胞质膜质子动力与大肠杆菌外膜的主动运输偶联起来。开展了体内交联研究以分析托蛋白B与其他细胞包膜蛋白的相互作用。检测到四种托蛋白B特异性交联复合物,其表观分子量分别为195、77、59和43.5 kDa。已证明195 kDa的复合物同时含有托蛋白B和FepA(铁载体肠螯合素的外膜受体)。在缺失托蛋白B或FepA的菌株中不存在195 kDa的复合物,并且可以通过托蛋白B特异性或FepA特异性单克隆抗体检测到。这是首个直接的体内证据,表明托蛋白B可以跨越周质空间与外膜受体进行物理相互作用。与该观察结果一致,外膜蛋白酶OmpT被证明在托蛋白B的周转中起作用,无论是否存在ExbB都会导致托蛋白B的快速降解。缺失OmpT可用于在exbB::Tn10菌株中稳定托蛋白B,使得托蛋白B蛋白的稳态水平与野生型菌株相同。在这些条件下,缺失ExbB会导致托蛋白B活性大幅降低,表明ExbB在能量转导中起直接作用,并且可能其次是保护托蛋白B蛋白免受蛋白水解。59 kDa的复合物在exbB::Tn10菌株中不存在,这表明要么ExbB与托蛋白B存在于复合物中,要么形成59 kDa的复合物需要ExbB。tolQ无义突变对观察到的交联图谱没有影响,证实其在托蛋白B依赖性现象中的参与程度较小,很可能是进化性串扰的结果。

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