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大肠杆菌中依赖ATP的高铁羟肟酸盐转运系统:通过竞争性肽图谱分析揭示,周质蛋白FhuD与整合膜蛋白FhuB的周质区域以及跨膜/细胞质区域相互作用。

ATP-dependent ferric hydroxamate transport system in Escherichia coli: periplasmic FhuD interacts with a periplasmic and with a transmembrane/cytoplasmic region of the integral membrane protein FhuB, as revealed by competitive peptide mapping.

作者信息

Mademidis A, Killmann H, Kraas W, Flechsler I, Jung G, Braun V

机构信息

Mikrobiologie/Membranphysiologie, Universität Tübingen, Germany.

出版信息

Mol Microbiol. 1997 Dec;26(5):1109-23. doi: 10.1046/j.1365-2958.1997.6592008.x.

Abstract

The Escherichia coli iron transport system via ferrichrome belongs to the group of ATP-dependent transporters that are widely distributed in prokaryotes and eukaryotes. Transport across the cytoplasmic membrane is mediated by three proteins: FhuD in the periplasm, FhuB in the cytoplasmic membrane and FhuC (ATPase) associated with the inside of the cytoplasmic membrane. Interaction of FhuD with FhuB was studied in vitro with biotinylated synthetic 10 residue and 20-24 residue peptides of FhuB by determining the activity of beta-galactosidase linked to the peptides via streptavidin. Peptides identical in sequence to only one of the four periplasmic loops (loop 2), predicted by a transmembrane model of FhuB, and peptides representing a transmembrane segment and part of the adjacent cytoplasmic loop 7 of FhuB bound to FhuD. Decapeptides were transferred into the periplasm of cells through a FhuA deletion derivative that forms permanently open channels three times as large as the porins in the outer membrane. FhuB peptides that bound to FhuD inhibited ferrichrome transport, while peptides that did not bind to FhuD did not affect transport. These data led us to propose that the periplasmic FhuD interacts with a transmembrane region and the cytoplasmic segment 7 of FhuB. The transmembrane region may be part of a pore through which a portion of FhuD inserts into the cytoplasmic membrane during transport. The cytoplasmic segment 7 of FhuB contains the conserved amino acid sequence EAA...G (in FhuB DTA ...G) found in ABC transporters, which is predicted to interact with the cytoplasmic FhuC ATPase. Triggering of ATP hydrolysis by substrate-loaded FhuD may occur by physical interaction between FhuD and FhuC, which bind close to each other on loop 7. Although FhuB consists of two homologous halves, FhuB(N) and FhuB(C), the sites identified for FhuD-mediated ferrichrome transport are asymmetrically arranged.

摘要

大肠杆菌通过铁载体转运铁的系统属于ATP依赖性转运蛋白家族,这类转运蛋白在原核生物和真核生物中广泛分布。跨细胞质膜的转运由三种蛋白质介导:周质中的FhuD、细胞质膜中的FhuB以及与细胞质膜内侧相关联的FhuC(ATP酶)。通过测定与肽段通过链霉亲和素相连的β-半乳糖苷酶的活性,在体外研究了FhuD与FhuB的相互作用,所用的是生物素化的FhuB合成10肽和20 - 24肽。与FhuB跨膜模型预测的四个周质环中仅一个环(环2)序列相同的肽段,以及代表FhuB一个跨膜片段和相邻细胞质环7一部分的肽段与FhuD结合。十肽通过FhuA缺失衍生物转运到细胞周质中,该衍生物形成的永久性开放通道比外膜中的孔蛋白大三倍。与FhuD结合的FhuB肽段抑制铁载体转运,而不与FhuD结合的肽段不影响转运。这些数据使我们提出,周质中的FhuD与FhuB的一个跨膜区域和细胞质片段7相互作用。该跨膜区域可能是一个孔的一部分,在转运过程中FhuD的一部分通过该孔插入细胞质膜。FhuB的细胞质片段7包含ABC转运蛋白中发现的保守氨基酸序列EAA...G(在FhuB中为DTA...G),预计该序列与细胞质中的FhuC ATP酶相互作用。底物负载的FhuD触发ATP水解可能是通过FhuD与FhuC之间的物理相互作用实现的,它们在环7上彼此靠近结合。尽管FhuB由两个同源部分FhuB(N)和FhuB(C)组成,但确定的FhuD介导铁载体转运的位点是不对称排列的。

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