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利用色氨酸磷光光谱法探究大肠杆菌甘露醇通透酶(EnzymeII(mtl))膜嵌入IIC(mtl)结构域中底物诱导的构象变化。

Substrate-induced conformational changes in the membrane-embedded IIC(mtl)-domain of the mannitol permease from Escherichia coli, EnzymeII(mtl), probed by tryptophan phosphorescence spectroscopy.

作者信息

Veldhuis Gertjan, Gabellieri Edi, Vos Erwin P P, Poolman Bert, Strambini Giovanni B, Broos Jaap

机构信息

Department of Biochemistry and Biophysical Chemistry, Groningen Biomolecular Science and Biotechnology Institute, University of Groningen, Nijenborgh 4, 9747 AG Groningen, The Netherlands.

出版信息

J Biol Chem. 2005 Oct 21;280(42):35148-56. doi: 10.1074/jbc.M507061200. Epub 2005 Aug 10.

Abstract

Membrane-bound transport proteins are expected to proceed via different conformational states during the translocation of a solute across the membrane. Tryptophan phosphorescence spectroscopy is one of the most sensitive methods used for detecting conformational changes in proteins. We employed this technique to study substrate-induced conformational changes in the mannitol permease, EnzymeII(mtl), of the phosphoenolpyruvate-dependent phosphotransferase system from Escherichia coli. Ten mutants containing a single tryptophan were engineered in the membrane-embedded IIC(mtl)-domain, harboring the mannitol translocation pathway. The mutants were characterized with respect to steady-state and time-resolved phosphorescence, yielding detailed, site-specific information of the Trp microenvironment and protein conformational homogeneity. The study revealed that the Trp environments vary from apolar, unstructured, and flexible sites to buried, highly homogeneous, rigid peptide cores. The most remarkable example of the latter was observed for position 97, because its long sub-second phosphorescence lifetime and highly structured spectra in both glassy and fluid media imply a well defined and rigid core around the probe that is typical of beta-sheet-rich structural motifs. The addition of mannitol had a large impact on most of the Trp positions studied. In the case of position 97, mannitol binding induced partial unfolding of the rigid protein core. On the contrary, for residue positions 126, 133, and 147, both steady-state and time-resolved data showed that mannitol binding induces a more ordered and homogeneous structure around these residues. The observations are discussed in context of the current mechanistic and structural model of EII(mtl).

摘要

膜结合转运蛋白在溶质跨膜转运过程中预计会经历不同的构象状态。色氨酸磷光光谱法是用于检测蛋白质构象变化的最灵敏方法之一。我们采用该技术研究了来自大肠杆菌的磷酸烯醇丙酮酸依赖性磷酸转移酶系统中甘露醇通透酶EnzymeII(mtl)的底物诱导构象变化。在包含甘露醇转运途径的膜嵌入IIC(mtl)结构域中构建了十个含有单个色氨酸的突变体。对这些突变体进行了稳态和时间分辨磷光表征,获得了色氨酸微环境和蛋白质构象同质性的详细位点特异性信息。研究表明,色氨酸环境从非极性、无结构且灵活的位点到埋藏的、高度均一的、刚性的肽核心各不相同。后者最显著的例子是97位,因为其在玻璃态和流体介质中都具有较长的亚秒级磷光寿命和高度结构化的光谱,这意味着探针周围有一个定义明确且刚性的核心,这是富含β折叠结构基序的典型特征。甘露醇的添加对大多数研究的色氨酸位置有很大影响。对于97位,甘露醇结合诱导刚性蛋白质核心部分展开。相反,对于126、133和147位残基,稳态和时间分辨数据均表明,甘露醇结合在这些残基周围诱导出更有序和均一的结构。结合当前EII(mtl)的机制和结构模型对这些观察结果进行了讨论。

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