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螺旋扭曲诱导的构象转换激活锤头状核酶的切割作用。

A helical twist-induced conformational switch activates cleavage in the hammerhead ribozyme.

作者信息

Dunham Christine M, Murray James B, Scott William G

机构信息

Department of Chemistry and Biochemistry, University of California at Santa Cruz, Santa Cruz, CA 95064, USA.

出版信息

J Mol Biol. 2003 Sep 12;332(2):327-36. doi: 10.1016/s0022-2836(03)00843-x.

Abstract

We have captured the structure of a pre-catalytic conformational intermediate of the hammerhead ribozyme using a phosphodiester tether formed between I and Stem II. This phosphodiester tether appears to mimic interactions in the wild-type hammerhead RNA that enable switching between nuclease and ligase activities, both of which are required in the replicative cycles of the satellite RNA viruses from which the hammerhead ribozyme is derived. The structure of this conformational intermediate reveals how the attacking nucleophile is positioned prior to cleavage, and demonstrates how restricting the ability of Stem I to rotate about its helical axis, via interactions with Stem II, can inhibit cleavage. Analogous covalent crosslinking experiments have demonstrated that imposing such restrictions on interhelical movement can change the hammerhead ribozyme from a nuclease to a ligase. Taken together, these results permit us to suggest that switching between ligase and nuclease activity is determined by the helical orientation of Stem I relative to Stem II.

摘要

我们利用在I与茎II之间形成的磷酸二酯连接体捕获了锤头状核酶的催化前构象中间体的结构。这种磷酸二酯连接体似乎模拟了野生型锤头状RNA中的相互作用,这些相互作用使得核酸酶和连接酶活性之间能够切换,而这两种活性在锤头状核酶所源自的卫星RNA病毒的复制周期中都是必需的。这种构象中间体的结构揭示了攻击亲核试剂在切割前是如何定位的,并证明了通过与茎II的相互作用来限制茎I围绕其螺旋轴旋转的能力是如何抑制切割的。类似的共价交联实验表明,对螺旋间运动施加此类限制可使锤头状核酶从核酸酶转变为连接酶。综合这些结果,我们认为连接酶和核酸酶活性之间的切换是由茎I相对于茎II的螺旋取向决定的。

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