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利用5-氟色氨酸荧光光谱法对大肠杆菌甘露醇通透酶跨膜C结构域进行结构研究。

Structural investigation of the transmembrane C domain of the mannitol permease from Escherichia coli using 5-FTrp fluorescence spectroscopy.

作者信息

Opačić Milena, Hesp Ben H, Fusetti Fabrizia, Dijkstra Bauke W, Broos Jaap

机构信息

Groningen Biomolecular Sciences and Biotechnology Institute, University of Groningen, AG Groningen, The Netherlands.

出版信息

Biochim Biophys Acta. 2012 Mar;1818(3):861-8. doi: 10.1016/j.bbamem.2011.11.001. Epub 2011 Nov 9.

Abstract

The mannitol transporter EII(mtl) from Escherichia coli is responsible for the uptake of mannitol over the inner membrane and its concomitant phosphorylation. EII(mtl) is functional as a dimer and its membrane-embedded C domain, IIC(mtl), harbors one high affinity mannitol binding site. To characterize this domain in more detail the microenvironments of thirteen residue positions were explored by 5-fluorotryptophan (5-FTrp) fluorescence spectroscopy. Because of the simpler photophysics of 5-FTrp compared to Trp, one can distinguish between the two 5-FTrp probes present in dimeric IIC(mtl). At many labeled positions, the microenvironment of the 5-FTrps in the two protomers differs. Spectroscopic properties of three mutants labeled at positions 198, 251, and 260 show that two conserved motifs (Asn194-His195 and Gly254-Ile255-His256-Glu257) are located in well-structured parts of IIC(mtl). Mannitol binding has a large impact on the structure around position 198, while only minor changes are induced at positions 251 and 260. Phosphorylation of the cytoplasmic B domain of EII(mtl) is sensed by 5-FTrp at positions 30, 42, 251 and 260. We conclude that many parts of the IIC(mtl) structure are involved in the sugar translocation. The structure of EII(mtl), as investigated in this work, differs from the recently solved structure of a IIC protein transporting diacetylchitobiose, ChbC, and also belonging to the glucose superfamily of EII sugar transporters. In EII(mtl), the sugar binding site is more close to the periplasmic face and the structure of the 2 protomers in the dimer is different, while both protomers in the ChbC dimer are essentially the same.

摘要

来自大肠杆菌的甘露醇转运蛋白EII(mtl)负责将甘露醇转运穿过内膜并伴随其磷酸化。EII(mtl)以二聚体形式发挥功能,其膜嵌入的C结构域IIC(mtl)含有一个高亲和力的甘露醇结合位点。为了更详细地表征该结构域,通过5-氟色氨酸(5-FTrp)荧光光谱法探索了13个残基位置的微环境。由于与色氨酸相比,5-FTrp的光物理性质更简单,因此可以区分二聚体IIC(mtl)中存在的两个5-FTrp探针。在许多标记位置,两个原体中5-FTrp的微环境不同。在位置198、251和260标记的三个突变体的光谱性质表明,两个保守基序(Asn194-His195和Gly254-Ile255-His256-Glu257)位于IIC(mtl)的结构良好的部分。甘露醇结合对位置198周围的结构有很大影响,而在位置251和260仅引起微小变化。EII(mtl)细胞质B结构域的磷酸化可通过5-FTrp在位置30、42、251和260处检测到。我们得出结论,IIC(mtl)结构的许多部分都参与了糖的转运。如本研究中所研究的,EII(mtl)的结构与最近解析的转运二乙酰壳二糖的IIC蛋白ChbC的结构不同,ChbC也属于EII糖转运蛋白的葡萄糖超家族。在EII(mtl)中,糖结合位点更靠近周质面,二聚体中两个原体的结构不同,而ChbC二聚体中的两个原体基本相同。

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