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DEAD盒蛋白eIF4A. 1. 一个最小的动力学和热力学框架揭示了RNA与核苷酸的偶联结合。

The DEAD box protein eIF4A. 1. A minimal kinetic and thermodynamic framework reveals coupled binding of RNA and nucleotide.

作者信息

Lorsch J R, Herschlag D

机构信息

Department of Biochemistry, Beckman Center, B400, Stanford University, Stanford, California 94305-5307, USA.

出版信息

Biochemistry. 1998 Feb 24;37(8):2180-93. doi: 10.1021/bi972430g.

Abstract

eIF4A is the archetypal member of the DEAD box family of proteins and has been proposed to use the energy from ATP hydrolysis to unwind structures in the 5'-untranslated regions of eukaryotic mRNAs during translation initiation. As a step toward understanding the mechanism of action of this class of enzymes, a minimal kinetic and thermodynamic framework for the RNA-activated ATPase function has been established for eIF4A. The enzyme's affinity for ssRNA is modulated by the binding of ATP.Mg2+ and ADP.Mg2+: the affinity of the E.ATP complex for ssRNA is approximately 40-fold higher than that of the E.ADP complex. The enzyme binds its substrates in a random manner; contrary to previous suggestions, neither ATP binding nor hydrolysis is required for binding of single-stranded RNA. The presence or absence of the gamma-phosphate on the bound nucleotide acts as a switch that modulates the enzyme's structure and ssRNA affinity. The data presented in this and the following paper in this issue suggest that ATP binding and hydrolysis produce a cycle of conformational and RNA affinity changes in eIF4A. Such cycles may be used by DEAD box proteins to transduce the energy from ATP hydrolysis into physical work, thereby allowing each member of this family to rearrange its RNA or RNA.protein target.

摘要

真核起始因子4A(eIF4A)是DEAD盒蛋白家族的典型成员,有人提出它在翻译起始过程中利用ATP水解产生的能量解开真核mRNA 5'非翻译区的结构。作为了解这类酶作用机制的一个步骤,已为eIF4A建立了RNA激活的ATP酶功能的最小动力学和热力学框架。该酶对单链RNA(ssRNA)的亲和力受ATP·Mg2+和ADP·Mg2+结合的调节:E·ATP复合物对ssRNA的亲和力比E·ADP复合物高约40倍。该酶以随机方式结合其底物;与先前的观点相反,单链RNA的结合既不需要ATP结合也不需要ATP水解。结合核苷酸上γ磷酸的存在与否充当调节酶结构和ssRNA亲和力的开关。本期这篇论文及后续论文中给出的数据表明,ATP结合和水解在eIF4A中产生构象和RNA亲和力变化的循环。这类循环可能被DEAD盒蛋白用于将ATP水解产生的能量转化为物理功,从而使该家族的每个成员能够重新排列其RNA或RNA·蛋白质靶标。

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