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能量偶联外膜转运蛋白和调节蛋白。

Energy-coupled outer membrane transport proteins and regulatory proteins.

作者信息

Braun Volkmar, Endriss Franziska

机构信息

Microbiology/Membrane Physiology, University of Tübingen, Auf der Morgenstelle 28, 72076 Tübingen, Germany.

出版信息

Biometals. 2007 Jun;20(3-4):219-31. doi: 10.1007/s10534-006-9072-5. Epub 2007 Mar 17.

Abstract

FhuA and FecA are two examples of energy-coupled outer membrane import proteins of gram-negative bacteria. FhuA transports iron complexed by the siderophore ferrichrome and serves as a receptor for phages, a toxic bacterial peptide, and a toxic protein. FecA transports diferric dicitrate and regulates transcription of an operon encoding five ferric citrate (Fec) transport genes. Properties of FhuA mutants selected according to the FhuA crystal structure are described. FhuA mutants in the TonB box, the hatch, and the beta-barrel are rather robust. TonB box mutants in FhuA FecA, FepA, Cir, and BtuB are compared; some mutations are suppressed by mutations in TonB. Mutant studies have not revealed a ferrichrome diffusion pathway, and tolerance to mutations in the region linking the TonB box to the hatch does not disclose a mechanism for how energy transfer from the cytoplasmic membrane to FhuA changes the conformation of FhuA such that bound substrates are released, the pore is opened, and substrates enter the periplasm, or how surface loops change their conformation such that TonB-dependent phages bind irreversibly and release their DNA into the cells. The FhuA and FecA crystal structures do not disclose the mechanism of these proteins, but they provide important information for specific functional studies. FecA is also a regulatory protein that transduces a signal from the cell surface into the cytoplasm. The interacting subdomains of the proteins in the FecA --> FecR --> FecI --> RNA polymerase signal transduction pathway resulting in fecABCDE transcription have been determined. Energy-coupled transporters transport not only iron and vitamin B12, but also other substrates of very low abundance such as sugars across the outer membrane; transcription regulation of the transport genes may occur similarly to that of the Fec transport genes.

摘要

FhuA和FecA是革兰氏阴性菌能量偶联外膜导入蛋白的两个例子。FhuA转运由铁载体铁色素络合的铁,并作为噬菌体、一种有毒细菌肽和一种有毒蛋白质的受体。FecA转运二价铁柠檬酸,调节编码五个柠檬酸铁(Fec)转运基因的操纵子的转录。描述了根据FhuA晶体结构选择的FhuA突变体的特性。FhuA在TonB框、舱口和β-桶中的突变体相当稳定。比较了FhuA、FecA、FepA、Cir和BtuB中TonB框突变体;一些突变被TonB中的突变抑制。突变研究尚未揭示铁色素扩散途径,并且对连接TonB框与舱口区域突变的耐受性并未揭示能量从细胞质膜转移到FhuA如何改变FhuA的构象,从而使结合的底物释放、孔打开且底物进入周质,或者表面环如何改变其构象,使得依赖TonB的噬菌体不可逆地结合并将其DNA释放到细胞中。FhuA和FecA晶体结构并未揭示这些蛋白质的机制,但它们为特定功能研究提供了重要信息。FecA也是一种调节蛋白,可将细胞表面的信号转导至细胞质中。已经确定了FecA→FecR→FecI→RNA聚合酶信号转导途径中导致fecABCDE转录的蛋白质相互作用亚结构域。能量偶联转运体不仅转运铁和维生素B12,还转运其他丰度极低的底物,如跨外膜的糖类;转运基因的转录调控可能与Fec转运基因的调控类似。

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