Crystal Structures of an Intrinsically Active Cholera Toxin Mutant Yield Insight into the Toxin Activation Mechanism,

霍乱毒素 活动站点 毒素 化学 突变体 蛋白质亚单位 立体化学 蛋白质水解 蛋白质结构 构象变化 大肠杆菌 晶体结构 生物物理学 结晶学 生物化学 生物 微生物学 基因
作者
Claire J. O’Neal,Edward I. Amaya,Michael G. Jobling,Randall K. Holmes,Wim G. J. Hol
出处
期刊:Biochemistry [American Chemical Society]
卷期号:43 (13): 3772-3782 被引量:69
标识
DOI:10.1021/bi0360152
摘要

Cholera toxin (CT) is a heterohexameric bacterial protein toxin belonging to a larger family of A/B ADP-ribosylating toxins. Each of these toxins undergoes limited proteolysis and/or disulfide bond reduction to form the enzymatically active toxic fragment. Nicking and reduction render both CT and the closely related heat-labile enterotoxin from Escherichia coli (LT) unstable in solution, thus far preventing a full structural understanding of the conformational changes resulting from toxin activation. We present the first structural glimpse of an active CT in structures from three crystal forms of a single-site A-subunit CT variant, Y30S, which requires no activational modifications for full activity. We also redetermined the structure of the wild-type, proenzyme CT from two crystal forms, both of which exhibit (i) better geometry and (ii) a different A2 "tail" conformation than the previously determined structure [Zhang et al. (1995) J. Mol. Biol. 251, 563−573]. Differences between wild-type CT and active CTY30S are observed in A-subunit loop regions that had been previously implicated in activation by analysis of the structure of an LT A-subunit R7K variant [van den Akker et al. (1995) Biochemistry 34, 10996−11004]. The 25−36 activation loop is disordered in CTY30S, while the 47−56 active site loop displays varying degrees of order in the three CTY30S structures, suggesting that disorder in the activation loop predisposes the active site loop to a greater degree of flexibility than that found in unactivated wild-type CT. On the basis of these six new views of the CT holotoxin, we propose a model for how the activational modifications experienced by wild-type CT are communicated to the active site.
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