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酵母苯丙氨酸转移核糖核酸的三维三级结构。

Three-dimensional tertiary structure of yeast phenylalanine transfer RNA.

作者信息

Kim S H, Suddath F L, Quigley G J, McPherson A, Sussman J L, Wang A H, Seeman N C, Rich A

出版信息

Science. 1974 Aug 2;185(4149):435-40. doi: 10.1126/science.185.4149.435.

Abstract

The 3-angstrom electron density map of crystalline yeast phenylalanine transfer RNA has provided us with a complete three-dimensional model which defines the positions of all of the nucleotide residues in the moleclule. The overall features of the molecule are virtually the same as those seen at a resolution of 4 angstroms except that many additional details of tertiary structure are now visualized. Ten types of hydrogen bonding are identified which define the specificity of tertiary interactions. The molecule is also stabilized by considerable stacking of the planar purines and pyrimidines. This tertiary structure explains, in a simple and direct fashion, chemical modification studies of transfer RNA. Since most of the tertiary interactions involve nucleotides which are common to all transfer RNA 's, it is likely that this three-dimensional structure provides a basic pattern of folding which may help to clarify the three-dimensional structure of all transfer RNA's.

摘要

结晶酵母苯丙氨酸转移核糖核酸的3埃电子密度图为我们提供了一个完整的三维模型,该模型确定了分子中所有核苷酸残基的位置。除了现在可以看到许多三级结构的额外细节外,该分子的整体特征与在4埃分辨率下看到的几乎相同。确定了十种类型的氢键,它们定义了三级相互作用的特异性。平面嘌呤和嘧啶的大量堆积也使分子得以稳定。这种三级结构以简单直接的方式解释了转移核糖核酸的化学修饰研究。由于大多数三级相互作用涉及所有转移核糖核酸共有的核苷酸,因此这种三维结构可能提供了一种基本的折叠模式,这可能有助于阐明所有转移核糖核酸的三维结构。

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