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用磷-32对真核生物信使核糖核酸5'末端进行标记:利用烟草酸焦磷酸酶去除帽结构

Labeling of eukaryotic messenger RNA 5' terminus with phosphorus -32: use of tobacco acid pyrophosphatase for removal of cap structures.

作者信息

Lockard R E, Rieser L, Vournakis J N

机构信息

Department of Biochemistry, George Washington University Medical School, Washington, D.C. 20037.

出版信息

Gene Amplif Anal. 1981;2:229-51.

PMID:6152889
Abstract

In recent years, there has been a growing appreciation of the potential applications of 5'-32P-end-labeled mRNA, not only for screening recombinant clones and mapping gene structure, but also for revealing possible nucleotide sequence and structural signals within mRNA molecules themselves, which may be important for eukaryotic mRNA processing and turnover and for controlling differential rates of translational initiation. Three major problems, however, have retarded progress in this area, lack of methods for efficient and reproducible removal of m7G5ppp5'-cap structures, which maintain the integrity of an RNA molecule; inability to generate a sufficient amount of labeled mRNA, owing to the limited availability of most pure mRNA species; and the frequent problem of RNA degradation during in vitro end-labeling owing to RNAse contamination. The procedures presented here permit one to decap and label minute quantities of mRNA, effectively. Tobacco acid pyrophosphatase is relatively efficient in removing cap structures from even nanogram quantities of available mRNA, and enough radioactivity can be easily generated from minute amounts ofintact mRNA with very high-specific-activity [gamma-32P]ATP and the inhibition of ribonuclease contamination with diethylpyrocarbonate. These procedures can be modified and applied to almost any other type of RNA molecule as well. In Section III of this volume, we explore in detail how effectively 5'-end-labeled mRNA can be used not only for nucleotide sequence analysis, but also for mapping mRNA secondary structure.

摘要

近年来,人们越来越认识到5'-32P末端标记的mRNA的潜在应用,它不仅可用于筛选重组克隆和绘制基因结构图谱,还能揭示mRNA分子本身可能存在的核苷酸序列和结构信号,这对于真核mRNA的加工、周转以及控制翻译起始的差异速率可能很重要。然而,该领域的进展受到三个主要问题的阻碍:缺乏有效且可重复去除m7G5ppp5'-帽结构的方法,帽结构可维持RNA分子的完整性;由于大多数纯mRNA种类的可得性有限,无法产生足够量的标记mRNA;以及在体外末端标记过程中,由于核糖核酸酶污染,RNA降解问题频发。本文介绍的方法能够有效地对微量mRNA进行脱帽和标记。烟草酸焦磷酸酶即使对于纳克量的可用mRNA,去除帽结构的效率也相对较高,并且使用具有非常高比活性的[γ-32P]ATP,从微量完整mRNA中可以轻松产生足够的放射性,同时用焦碳酸二乙酯抑制核糖核酸酶污染。这些方法也可以进行修改并应用于几乎任何其他类型的RNA分子。在本卷的第三节中,我们将详细探讨5'-末端标记的mRNA不仅可用于核苷酸序列分析,还可用于绘制mRNA二级结构图谱的有效性。

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