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无配体 TRAP 的晶体结构:对动态变构的启示。

Crystal structure of unliganded TRAP: implications for dynamic allostery.

机构信息

Heddle Initiative Research Unit, RIKEN,Wako, Saitama 351-0198, Japan.

出版信息

Biochem J. 2011 Mar 15;434(3):427-34. doi: 10.1042/BJ20101813.

Abstract

Allostery is vital to the function of many proteins. In some cases, rather than a direct steric effect, mutual modulation of ligand binding at spatially separated sites may be achieved through a change in protein dynamics. Thus changes in vibrational modes of the protein, rather than conformational changes, allow different ligand sites to communicate. Evidence for such an effect has been found in TRAP (trp RNA-binding attenuation protein), a regulatory protein found in species of Bacillus. TRAP is part of a feedback system to modulate expression of the trp operon, which carries genes involved in tryptophan synthesis. Negative feedback is thought to depend on binding of tryptophan-bound, but not unbound, TRAP to a specific mRNA leader sequence. We find that, contrary to expectations, at low temperatures TRAP is able to bind RNA in the absence of tryptophan, and that this effect is particularly strong in the case of Bacillus stearothermophilus TRAP. We have solved the crystal structure of this protein with no tryptophan bound, and find that much of the structure shows little deviation from the tryptophan-bound form. These data support the idea that tryptophan may exert its effect on RNA binding by TRAP through dynamic and not structural changes, and that tryptophan binding may be mimicked by low temperature.

摘要

变构作用对于许多蛋白质的功能至关重要。在某些情况下,配体结合在空间上分离的位点的相互调制可能不是通过构象变化,而是通过蛋白质动力学的变化来实现。因此,蛋白质振动模式的变化而不是构象变化允许不同的配体结合位点进行通讯。这种效应的证据已经在 TRAP(色氨酸 RNA 结合衰减蛋白)中发现,TRAP 是芽孢杆菌属物种中的一种调节蛋白。TRAP 是调节 trp 操纵子表达的反馈系统的一部分,该操纵子携带参与色氨酸合成的基因。负反馈被认为依赖于色氨酸结合但未结合的 TRAP 与特定的 mRNA 前导序列的结合。我们发现,与预期相反,在低温下,TRAP 能够在没有色氨酸的情况下结合 RNA,而在嗜热脂肪芽孢杆菌 TRAP 的情况下,这种效应特别强烈。我们已经解决了没有色氨酸结合的这种蛋白质的晶体结构,并且发现大部分结构与色氨酸结合形式几乎没有偏差。这些数据支持这样一种观点,即色氨酸可能通过动态而不是结构变化对 TRAP 的 RNA 结合施加其作用,并且低温可能模拟色氨酸结合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a328/3048579/2f632d530255/bic897i001.jpg

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