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对高度组成型活性突变体的研究揭示了cAMP如何激活cAMP受体蛋白。

Study of highly constitutively active mutants suggests how cAMP activates cAMP receptor protein.

作者信息

Youn Hwan, Kerby Robert L, Conrad Mary, Roberts Gary P

机构信息

Department of Bacteriology, University of Wisconsin, Madison, 53706, USA.

出版信息

J Biol Chem. 2006 Jan 13;281(2):1119-27. doi: 10.1074/jbc.M509421200. Epub 2005 Oct 31.

Abstract

The cAMP receptor protein (CRP) of Escherichia coli undergoes a conformational change in response to cAMP binding that allows it to bind specific DNA sequences. Using an in vivo screening method following the simultaneous randomization of the codons at positions 127 and 128 (two C-helix residues of the protein interacting with cAMP), we have isolated a series of novel constitutively active CRP variants. Sequence analysis showed that this group of variants commonly possesses leucine or methionine at position 127 with a beta-branched amino acid at position 128. One specific variant, T127L/S128I CRP, showed extremely high cAMP-independent DNA binding affinity comparable with that of cAMP-bound wild-type CRP. Further biochemical analysis of this variant and others revealed that Leu(127) and Ile(128) have different roles in stabilizing the active conformation of CRP in the absence of cAMP. Leu(127) contributes to an improved leucine zipper at the dimer interface, leading to an altered intersubunit interaction in the C-helix region. In contrast, Ile(128) stabilizes the proper position of the beta4/beta5 loop by functionally communicating with Leu(61). By analogy, the results suggest two direct local effects of cAMP binding in the course of activating wild-type CRP: (i) C-helix repositioning through direct interaction with Thr(127) and Ser(128) and (ii) the concomitant reorientation of the beta4/beta5 loop. Finally, we also report that elevated expression of T127L/S128I CRP markedly perturbed E. coli growth even in the absence of cAMP, which suggests why comparably active variants have not been described previously.

摘要

大肠杆菌的环磷酸腺苷(cAMP)受体蛋白(CRP)会因结合cAMP而发生构象变化,使其能够结合特定的DNA序列。我们采用体内筛选方法,同时随机化第127和128位密码子(该蛋白与cAMP相互作用的两个C螺旋残基),分离出了一系列新型的组成型活性CRP变体。序列分析表明,这组变体在第127位通常具有亮氨酸或甲硫氨酸,在第128位具有β分支氨基酸。一种特定的变体T127L/S128I CRP,表现出极高的不依赖cAMP的DNA结合亲和力,与结合cAMP的野生型CRP相当。对该变体及其他变体的进一步生化分析表明,在没有cAMP的情况下,Leu(127)和Ile(128)在稳定CRP的活性构象中发挥不同作用。Leu(127)有助于在二聚体界面改善亮氨酸拉链,导致C螺旋区域亚基间相互作用改变。相反,Ile(128)通过与Leu(61)功能通讯来稳定β4/β5环的正确位置。由此类推,结果表明cAMP结合在激活野生型CRP过程中有两种直接的局部效应:(i)通过与Thr(127)和Ser(128)直接相互作用使C螺旋重新定位;(ii)β4/β5环随之重新定向。最后,我们还报告称,即使在没有cAMP的情况下,T127L/S128I CRP的高表达也会显著干扰大肠杆菌的生长,这解释了为何此前未描述过具有类似活性的变体。

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