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锤头状核酶的三维结构。

Three-dimensional structure of a hammerhead ribozyme.

作者信息

Pley H W, Flaherty K M, McKay D B

机构信息

Department of Structural Biology, Stanford University School of Medicine, California 94305-5400.

出版信息

Nature. 1994 Nov 3;372(6501):68-74. doi: 10.1038/372068a0.

Abstract

The hammerhead ribozyme is a small catalytic RNA motif made up of three base-paired stems and a core of highly conserved, non-complementary nucleotides essential for catalysis. The X-ray crystallographic structure of a hammerhead RNA-DNA ribozyme-inhibitor complex at 2.6 A resolution reveals that the base-paired stems are A-form helices and that the core has two structural domains. The first domain is formed by the sequence 5'-CUGA following stem I and is a sharp turn identical to the uridine turn of transfer RNA, whereas the second is a non-Watson-Crick three-base-pair duplex with a divalent-ion binding site. The phosphodiester backbone of the DNA inhibitor strand is splayed out at the phosphate 5' to the cleavage site. The structure indicates that the ribozyme may destabilize a substrate strand in order to facilitate twisting of the substrate to allow cleavage of the scissile bond.

摘要

锤头状核酶是一种小的催化RNA基序,由三个碱基配对的茎和一个对催化至关重要的高度保守的非互补核苷酸核心组成。分辨率为2.6埃的锤头状RNA-DNA核酶-抑制剂复合物的X射线晶体结构表明,碱基配对的茎是A-型螺旋,核心有两个结构域。第一个结构域由茎I之后的5'-CUGA序列形成,是一个与转运RNA的尿苷转角相同的急转弯,而第二个结构域是一个具有二价离子结合位点的非沃森-克里克三碱基对双链体。DNA抑制剂链的磷酸二酯主链在切割位点5'端的磷酸处展开。该结构表明,核酶可能会使底物链不稳定,以便促进底物扭转,从而允许切割可裂解键。

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