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纯化信使RNA前体剪接的辅因子需求

Cofactor requirements of splicing of purified messenger RNA precursors.

作者信息

Hardy S F, Grabowski P J, Padgett R A, Sharp P A

出版信息

Nature. 1984;308(5957):375-7. doi: 10.1038/308375a0.

Abstract

The origin and functions of introns in protein coding genes is one of the enigmas of molecular biology. Splicing processes that remove intervening sequences from precursor RNAs must have either predated or co-evolved with introns. Inferences about the origin of introns and the possible modes of regulation of splicing should emerge from an understanding of the biochemical mechanisms of splicing. The biochemistry of splicing of tRNA and rRNA precursors has rapidly advanced with the development of in vitro reactions containing soluble components that duplicate in vivo reactions. We have recently shown that accurate splicing of an adenovirus mRNA precursor occurs during a coupled transcription/splicing reaction in a soluble whole cell extract. We now report that an exogenous RNA substrate containing the first and second leaders of adenovirus 2 is accurately spliced when added to an extract of HeLa cells. ATP and Mg2+ are essential cofactors for the reaction. The time course of splicing is unusual; a lag of 45 min is observed before the appearance of splicing product.

摘要

蛋白质编码基因中内含子的起源和功能是分子生物学的谜团之一。从前体RNA中去除间隔序列的剪接过程必定早于内含子出现或与内含子共同进化。关于内含子起源以及剪接可能的调控模式的推断应源于对剪接生化机制的理解。随着包含可在体内反应中复制的可溶性成分的体外反应的发展,tRNA和rRNA前体的剪接生物化学取得了迅速进展。我们最近表明,腺病毒mRNA前体的精确剪接发生在可溶性全细胞提取物中的偶联转录/剪接反应过程中。我们现在报告,当将含有腺病毒2的第一和第二前导序列的外源RNA底物添加到HeLa细胞提取物中时,它会被精确剪接。ATP和Mg2+是该反应必不可少的辅助因子。剪接的时间进程不同寻常;在剪接产物出现之前观察到45分钟的延迟。

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