首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Site-directed disulfide bonding reveals an interaction site between energy-coupling protein TonB and BtuB the outer membrane cobalamin transporter
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Site-directed disulfide bonding reveals an interaction site between energy-coupling protein TonB and BtuB the outer membrane cobalamin transporter

机译:定点二硫键揭示了能量耦合蛋白TonB和BtuB(外膜钴胺素转运蛋白)之间的相互作用位点

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摘要

Transport of vitamin B12 across the outer membrane of Escherichia coli, like that of iron-siderophore complexes, is an active transport process requiring a specific outer membrane transporter BtuB, the proton motive force, and the trans-periplasmic energy coupling protein TonB. Interaction between TonB and two of the TonB-dependent siderophore transporters has been detected previously by formaldehyde crosslinking. Here, site-directed disulfide crosslinking demonstrates contact between a conserved region of BtuB, called the TonB-box, and a portion of TonB, previously implicated as the site of suppressors of TonB-box mutations. The specific pattern of disulfide bonding to alternating residues in the TonB-box allowed deduction of the conformation and parallel orientation of the contact region between these two protein segments. Crosslinking at several positions was increased when BtuB was loaded with substrate, and the crosslinking pattern was altered by the presence of substitutions in BtuB that cause a TonB-uncoupled phenotype. This crosslinking process thus reflects protein interactions that are involved in coupling to active transport.
机译:像铁-铁载体复合物一样,维生素B12跨大肠杆菌外膜的运输是一种主动运输过程,需要特定的外膜转运蛋白BtuB,质子动力和跨周质能偶联蛋白TonB。以前已经通过甲醛交联检测到TonB和两个依赖于TonB的铁载体转运蛋白之间的相互作用。此处,定点二硫键交联表明BtuB的保守区域(称为TonB-box)与一部分TonB之间的接触,该区域先前与TonB-box突变的抑制位点有关。与TonB-box中交替残基结合的二硫键的特定模式允许推导这两个蛋白片段之间接触区域的构象和平行取向。当BtuB装载底物时,在几个位置上的交联增加,并且交联模式因BtuB中存在导致TonB不偶联表型的取代而改变。因此,该交联过程反映了与主动转运偶联所涉及的蛋白质相互作用。

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