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蜜二糖通透酶在共底物结合时二级结构和酸性侧链的变化。

Changes in secondary structures and acidic side chains of melibiose permease upon cosubstrates binding.

作者信息

León Xavier, Lemonnier Raymonde, Leblanc Gérard, Padrós Esteve

机构信息

Unitat de Biofísica, Departament de Bioquímica i de Biologia Molecular, Facultat de Medicina, and Centre d'Estudis en Biofísica, Universitat Autònoma de Barcelona, Barcelona, Spain.

出版信息

Biophys J. 2006 Dec 15;91(12):4440-9. doi: 10.1529/biophysj.106.090241. Epub 2006 Sep 29.

Abstract

Infrared difference spectroscopy analysis of the purified melibiose permease of Escherichia coli reconstituted into liposomes was carried out as a function of the presence of the two symporter substrates (Na(+), melibiose) in either H(2)O or in D(2)O media. Essentially, the data first show that addition of Na(+) induces appearance of peaks assigned to changes in the environment and/or orientation of alpha-helical domains of purified melibiose permease. Likewise, melibiose addition in the presence of Na(+) produces peaks corresponding to additional changes of alpha-helix environment or tilt. In addition to these changes, a pair of peaks (1599 (+) cm(-1)/1576 (-) cm(-1)) appearing in the Na(+)-induced difference spectrum is assigned to the antisymmetric stretching of COO(-) groups, since they show practically no shift upon H/D exchange. It is proposed that these acidic groups participate in Na(+) co-ordination. A corresponding pair of peaks, again fairly insensitive to H/D substitution (1591 (-) cm(-1)/1567 (+) cm(-1)), appear in the melibiose-induced difference spectra, and may again be assigned to COO(-) groups. The latter carboxyl groups may correspond to part or all of the acidic residues interacting with Lys or Arg in the resting state that become free upon melibiose binding.

摘要

对重构到脂质体中的纯化大肠杆菌蜜二糖通透酶进行了红外差光谱分析,该分析是在H₂O或D₂O介质中两种同向转运体底物(Na⁺、蜜二糖)存在的情况下进行的函数分析。从本质上讲,数据首先表明,添加Na⁺会诱导出现一些峰,这些峰归因于纯化的蜜二糖通透酶α-螺旋结构域的环境和/或方向的变化。同样,在存在Na⁺的情况下添加蜜二糖会产生与α-螺旋环境或倾斜的额外变化相对应的峰。除了这些变化外,在Na⁺诱导的差光谱中出现的一对峰(1599(+)cm⁻¹/1576(-)cm⁻¹)被归因于COO⁻基团的反对称拉伸,因为它们在H/D交换时几乎没有位移。有人提出这些酸性基团参与Na⁺的配位。在蜜二糖诱导的差光谱中出现了一对相应的峰,同样对H/D取代相当不敏感(1591(-)cm⁻¹/1567(+)cm⁻¹),并且可能再次归因于COO⁻基团。后一组羧基可能对应于在静止状态下与赖氨酸或精氨酸相互作用的部分或全部酸性残基,这些残基在蜜二糖结合时会变得游离。

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