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溶质会改变外膜转运蛋白中配体结合环的构象。

Solutes alter the conformation of the ligand binding loops in outer membrane transporters.

作者信息

Kim Miyeon, Xu Qi, Murray David, Cafiso David S

机构信息

Department of Chemistry and Biophysics Program, P.O. Box 400319, McCormick Road, University of Virginia, Charlottesville, USA.

出版信息

Biochemistry. 2008 Jan 15;47(2):670-9. doi: 10.1021/bi7016415. Epub 2007 Dec 20.

Abstract

The binding and recognition of ligands by bacterial outer membrane transport proteins is mediated in part by interactions made through their extracellular loops. Here, site-directed spin labeling (SDSL) and electron paramagnetic resonance (EPR) spectroscopy were used to examine the effect of stabilizing solutes on the extracellular loops in BtuB, the vitamin B12 transporter, and FecA, the ferric citrate transporter. EPR spectra from the extracellular loops of FecA and BtuB arise from dynamic backbone segments, and distance measurements made by double electron-electron resonance indicate that the second extracellular loop in BtuB samples a wide range of conformations. These conformations are dramatically restricted upon substrate binding. In addition, the EPR spectra from nitroxide labels attached to the extracellular loops in BtuB and FecA are highly sensitive to solutes, and at every site examined the motion of the label is significantly reduced in the presence of stabilizing osmolytes, such as polyethylene glycols. For the second extracellular loop in BtuB, the solute-induced structural changes are small, but they are sufficient to bring spin-labeled side chains into tertiary contact with other portions of the protein. The spectroscopic changes seen by SDSL suggest that high concentrations of stabilizing solutes, such as those used to generate membrane protein crystals, result in a more compact and ordered state of the protein than is seen under more physiological conditions.

摘要

细菌外膜转运蛋白对配体的结合和识别部分是通过其细胞外环的相互作用介导的。在此,利用定点自旋标记(SDSL)和电子顺磁共振(EPR)光谱来研究稳定溶质对维生素B12转运蛋白BtuB和柠檬酸铁转运蛋白FecA的细胞外环的影响。FecA和BtuB细胞外环的EPR光谱来自动态的主链片段,通过双电子-电子共振进行的距离测量表明,BtuB中的第二个细胞外环呈现出广泛的构象。这些构象在底物结合时会受到显著限制。此外,连接到BtuB和FecA细胞外环上的氮氧化物标签的EPR光谱对溶质高度敏感,在每个检测位点,在存在稳定渗透压剂(如聚乙二醇)的情况下,标签的运动显著减少。对于BtuB中的第二个细胞外环,溶质诱导的结构变化很小,但足以使自旋标记的侧链与蛋白质的其他部分形成三级接触。SDSL观察到的光谱变化表明,高浓度的稳定溶质(如用于生成膜蛋白晶体的溶质)会使蛋白质处于比在更生理条件下更紧凑和有序的状态。

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