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转运缺陷型突变改变了外膜转运蛋白能量偶联基序的构象。

Transport-defective mutations alter the conformation of the energy-coupling motif of an outer membrane transporter.

作者信息

Coggshall K A, Cadieux N, Piedmont C, Kadner R J, Cafiso D S

机构信息

Department of Chemistry and Biophysics Program, University of Virginia, Charlottesville, Virginia 22901, USA.

出版信息

Biochemistry. 2001 Nov 20;40(46):13964-71. doi: 10.1021/bi015602p.

Abstract

The bacterial outer membrane transporter for vitamin B(12), BtuB, derives its energy for transport by interacting with the trans-periplasmic membrane protein TonB. This interaction with TonB occurs in part through an N-terminal segment in the BtuB sequence called the Ton box. In the present study, site-directed spin labeling of intact outer membrane preparations was used to investigate the conformation of the Ton box in wild-type BtuB and in two transport-defective mutants, L8P and V10P. In the wild-type protein, the Ton box is folded into the barrel of the transporter. The conformation of this segment is dramatically different in the transport-defective mutants L8P and V10P, where the Ton box is found to be flexible, and undocked from the transporter barrel with a greater exposure to the periplasm. In the wild-type protein, vitamin B(12) induces an undocking of the Ton box, but its addition to these transport defective mutants produces little or no change in the conformation of the Ton box. Proline substitutions at positions that do not alter transport do not alter the wild-type conformation of the Ton box; thus, the effect of substituting proline at positions 8 and 10 on the docked state of the Ton box appears to be unique. The failure of these mutants to execute the B(12) transport cycle may be a result of the altered conformation of the Ton box.

摘要

维生素B12的细菌外膜转运蛋白BtuB通过与跨周质膜蛋白TonB相互作用来获取转运所需的能量。这种与TonB的相互作用部分是通过BtuB序列中一个名为Ton框的N端片段实现的。在本研究中,利用完整外膜制剂的定点自旋标记技术,研究野生型BtuB以及两个转运缺陷型突变体L8P和V10P中Ton框的构象。在野生型蛋白中,Ton框折叠到转运蛋白的桶状结构中。在转运缺陷型突变体L8P和V10P中,该片段的构象有显著差异,其中Ton框是灵活的,并且从转运蛋白桶状结构中脱离,更多地暴露于周质。在野生型蛋白中,维生素B12会诱导Ton框脱离,但将其添加到这些转运缺陷型突变体中,Ton框的构象几乎没有变化。在不改变转运功能的位置进行脯氨酸替换不会改变Ton框的野生型构象;因此,在第8位和第10位替换脯氨酸对Ton框对接状态的影响似乎是独特的。这些突变体无法执行B12转运循环可能是Ton框构象改变的结果。

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