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由RNA组成的特定氨基酸结合位点。

A specific amino acid binding site composed of RNA.

作者信息

Yarus M

机构信息

Department of Molecular, Cellular, and Developmental Biology, University of Colorado, Boulder 80309.

出版信息

Science. 1988 Jun 24;240(4860):1751-8. doi: 10.1126/science.3381099.

Abstract

A specific, reversible binding site for a free amino acid is detectable on the intron of the Tetrahymena self-splicing ribosomal precursor RNA. The site selects arginine among the natural amino acids, and prefers the L- to the D-amino acid. The dissociation constant is in the millimolar range, and amino acid binding is at or in the catalytic rG splicing substrate site. Occupation of the G site by L-arginine therefore inhibits splicing by inhibiting the binding of rG, without inhibition of later reactions in the splicing reaction sequence. Arginine binding specificity seems to be directed at the side chain and the guanidino radical, and the alpha-amino and carboxyl groups are dispensable for binding. The arginine site can be placed within the G site by structural homology, with consequent implications for RNA-amino acid interaction, for the origin of the genetic code, for control of RNA activities, and for further catalytic capabilities for RNA.

摘要

在嗜热四膜虫自我剪接核糖体前体RNA的内含子上可检测到一个游离氨基酸的特异性可逆结合位点。该位点在天然氨基酸中选择精氨酸,并且优先结合L-氨基酸而非D-氨基酸。解离常数在毫摩尔范围内,氨基酸结合发生在催化性rG剪接底物位点或其内部。因此,L-精氨酸占据G位点会通过抑制rG的结合来抑制剪接,而不会抑制剪接反应序列中的后续反应。精氨酸结合特异性似乎针对侧链和胍基,α-氨基和羧基对于结合并非必需。通过结构同源性可将精氨酸位点置于G位点内,这对RNA-氨基酸相互作用、遗传密码的起源、RNA活性的控制以及RNA的进一步催化能力均有影响。

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