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大肠杆菌磷酸烯醇丙酮酸依赖性甘露醇转运系统的IImtl酶含单个色氨酸突变体的荧光研究。

A fluorescence study of single tryptophan-containing mutants of enzyme IImtl of the Escherichia coli phosphoenolpyruvate-dependent mannitol transport system.

作者信息

Dijkstra D S, Broos J, Lolkema J S, Enequist H, Minke W, Robillard G T

机构信息

Department of Biochemistry and Groningen Biomolecular Sciences, University of Groningen, The Netherlands.

出版信息

Biochemistry. 1996 May 28;35(21):6628-34. doi: 10.1021/bi952222t.

Abstract

The fluorescence properties of six different single Trp mutants of the mannitol-specific transporter of Escherichia coli were studied in order to derive structural information at different locations in the enzyme. The use of pure detergent and special protein purification protocols was essential for reliable fluorescence spectra, as judged from tyrosine-like fluorescence in a tryptophan-minus mutant (Robillard et al., 1996). The steady-state fluorescence spectra of EIImtl mutants with single tryptophan residues at positions 30, 42, 109, 117, 320, and 384 provided information concerning the polarity of the environment and the effects of mannitol binding at these positions. Tryptophan positions 42, 109, and 117 with emission maxima ranging from 337 to 340 nm are relatively polar, and position 384 with an emission maximum at 346 nm is highly polar, whereas position 30 is highly apolar with a maximum at 324 nm. The fluorescence characteristics of tryptophan 30 suggest a buried position in a hydrophobic part of the enzyme, which is confirmed by the low Stern-Volmer quenching constant for I- quenching. Positions 109 and 117 show the highest quenching constants, indicating the most exposed positions, whereas positions 320 and 42 are moderately quenched, by I-. The tryptophan residue at position 384 is, even in the absence of externally added quencher, very strongly quenched, possibly by the carboxylate from aspartate 384 or by a tyrosinate at position 458 which is nearby in the folded protein (AB et al., in preparation; van Montfort et al., in preparation). The observed emission maxima and accessibilities of the tryptophans at the different positions are consistent with the predicted topology of the enzyme (Sugiyama et al., 1991). When mannitol is bound to wild-type EIImtl, an increase in fluorescence emission intensity was observed (Wood, 1988) which can now be attributed primarily to increased fluorescence intensity of the tryptophan at position 30.

摘要

为了获取大肠杆菌甘露醇特异性转运蛋白不同位置的结构信息,研究了该蛋白六个不同单色氨酸突变体的荧光特性。根据色氨酸缺失突变体中的酪氨酸样荧光判断(罗比拉德等人,1996年),使用纯去污剂和特殊的蛋白质纯化方案对于获得可靠的荧光光谱至关重要。在位置30、42、109、117、320和384处具有单个色氨酸残基的EIImtl突变体的稳态荧光光谱提供了有关环境极性以及甘露醇在这些位置结合的影响的信息。发射最大值在337至340nm之间的色氨酸位置42、109和117相对极性较大,发射最大值在346nm处的位置384极性很高,而位置30在324nm处具有最大值,极性很低。色氨酸30的荧光特性表明其位于酶的疏水部分的埋藏位置,这通过I-猝灭的低斯特恩-沃尔默猝灭常数得到证实。位置109和117显示出最高的猝灭常数,表明是最暴露的位置,而位置320和42被I-适度猝灭。即使在没有外部添加猝灭剂的情况下,位置384处的色氨酸残基也被非常强烈地猝灭,可能是被天冬氨酸384的羧酸盐或折叠蛋白中附近位置458处的酪氨酸盐猝灭(AB等人,正在准备中;范·蒙特福特等人,正在准备中)。在不同位置观察到的色氨酸的发射最大值和可及性与该酶预测的拓扑结构一致(杉山等人,1991年)。当甘露醇与野生型EIImtl结合时,观察到荧光发射强度增加(伍德,1988年),现在这主要可归因于位置30处色氨酸的荧光强度增加。

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