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GTP和GDP与细菌起始因子2结合的热力学表明存在两种类型的结构转变。

Thermodynamics of GTP and GDP binding to bacterial initiation factor 2 suggests two types of structural transitions.

作者信息

Hauryliuk Vasili, Mitkevich Vladimir A, Draycheva Albena, Tankov Stoyan, Shyp Viktoriya, Ermakov Andrey, Kulikova Alexandra A, Makarov Alexander A, Ehrenberg Mans

机构信息

Institute of Technology, University of Tartu, Nooruse Street 1, Room 425, 50411 Tartu, Estonia.

出版信息

J Mol Biol. 2009 Dec 11;394(4):621-6. doi: 10.1016/j.jmb.2009.10.015. Epub 2009 Oct 22.

Abstract

During initiation of messenger RNA translation in bacteria, the GTPase initiation factor (IF) 2 plays major roles in the assembly of the preinitiation 30S complex and its docking to the 50S ribosomal subunit leading to the 70S initiation complex, ready to form the first peptide bond in a nascent protein. Rapid and accurate initiation of bacterial protein synthesis is driven by conformational changes in IF2, induced by GDP-GTP exchange and GTP hydrolysis. We have used isothermal titration calorimetry and linear extrapolation to characterize the thermodynamics of the binding of GDP and GTP to free IF2 in the temperature interval 4-37 degrees C. IF2 binds with about 20-fold and 2-fold higher affinity for GDP than for GTP at 4 and 37 degrees C, respectively. The binding of IF2 to both GTP and GDP is characterized by a large heat capacity change (-868+/-25 and -577+/-23 cal mol(-1) K(-1), respectively), associated with compensatory changes in binding entropy and enthalpy. From our data, we propose that GTP binding to IF2 leads to protection of hydrophobic amino acid residues from solvent by the locking of switch I and switch II loops to the gamma-phosphate of GTP, as in the case of elongation factor G. From the large heat capacity change (also upon GDP binding) not seen in the case of elongation factor G, we propose the existence of yet another type of conformational change in IF2, which is induced by GDP and GTP alike. Also, this transition is likely to protect hydrophobic groups from solvent, and its functional relevance is discussed.

摘要

在细菌中信使核糖核酸(mRNA)翻译起始过程中,GTP酶起始因子(IF)2在起始前30S复合物的组装及其与50S核糖体亚基对接形成70S起始复合物的过程中发挥主要作用,该复合物准备在新生蛋白质中形成第一个肽键。细菌蛋白质合成的快速准确起始是由IF2的构象变化驱动的,这种变化由GDP - GTP交换和GTP水解诱导。我们使用等温滴定量热法和线性外推法来表征在4 - 37摄氏度温度区间内GDP和GTP与游离IF2结合的热力学。在4摄氏度和37摄氏度时,IF2与GDP的结合亲和力分别比与GTP的结合亲和力高约20倍和2倍。IF2与GTP和GDP的结合都具有较大的热容变化(分别为-868±25和-577±23 cal mol⁻¹ K⁻¹),这与结合熵和焓的补偿性变化相关。根据我们的数据,我们提出GTP与IF2的结合会导致开关I和开关II环锁定到GTP的γ-磷酸上,从而保护疏水氨基酸残基不与溶剂接触,就像延伸因子G的情况一样。从延伸因子G中未观察到的较大热容变化(GDP结合时也如此),我们提出IF2中存在另一种构象变化类型,这种变化由GDP和GTP共同诱导。此外,这种转变可能会保护疏水基团不与溶剂接触,并对其功能相关性进行了讨论。

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