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酿酒酵母中前体tRNA的3'端加工。核酸外切酶和核酸内切酶的纯化与特性分析。

Pre-tRNA 3'-processing in Saccharomyces cerevisiae. Purification and characterization of exo- and endoribonucleases.

作者信息

Papadimitriou A, Gross H J

机构信息

Institut für Biochemie, Bayerische Julius-Maximilians-Universität, Biozentrum, Würzburg, Germany.

出版信息

Eur J Biochem. 1996 Dec 15;242(3):747-59. doi: 10.1111/j.1432-1033.1996.0747r.x.

Abstract

We investigated ribonucleases from Saccharomyces cerevisiae which are active in pre-tRNA 3'-processing in vitro. Two pre-tRNA 3'-exonucleases with molecular masses of 33 and 60 kDa, two pre-tRNA 3'-endonucleases with molecular masses of 45 kDa/60 kDa and 55 kDa and 70-kDa 3'-pre-tRNase were purified from yeast whole cell extracts by several successive chromatographic purification steps. The purified exonucleases are non-processive 3'-exonucleases that catalyze the exonucleolytic processing of 3'-trailer sequences of pre-tRNAs to produce mature tRNAs. The 45-kDa/60-kDa 3'-endonuclease is tRNA-specific and catalyzes the processing of pre-tRNAs in a single endonucleolytic step. Two isoenzymes of this activity (p45 and p60) were identified by chromatography. The second endonuclease, p55, is dependent on monovalent ions and cleaves about three nucleotides downstream the mature 3'-end. All of the purified 3'-pre-tRNases accept homologous as well as heterologous pre-tRNA substrates. Pre-tRNAs carrying a 5'-leader are processed with almost the same efficiency as those lacking this 5'-leader. Mature tRNAs carrying the CCA 3'-sequence and tRNA pseudogene products carrying mutations in the mature domain are processed by the 3'-exonucleases, not by the 3'-endonucleases. The specific endonuclease p45/p60 discriminates between UUUOH as a 3'-flank, which is cleaved, and the CCA 3'-end of mature tRNAs, which is not cleaved. This study suggests that several 3'-pre-tRNases are active on tRNA precursors in vitro and might therefore in pre-tRNA 3'-processing in yeast, partly in a cooperative manner.

摘要

我们研究了酿酒酵母中在体外前体tRNA 3'加工过程中具有活性的核糖核酸酶。通过几个连续的色谱纯化步骤,从酵母全细胞提取物中纯化出了两种分子量分别为33 kDa和60 kDa的前体tRNA 3'外切核酸酶、两种分子量分别为45 kDa/60 kDa和55 kDa的前体tRNA 3'内切核酸酶以及70 kDa的3'-前体tRNA酶。纯化后的外切核酸酶是非进行性的3'外切核酸酶,可催化前体tRNA的3'拖尾序列进行外切核酸加工以产生成熟的tRNA。45 kDa/60 kDa的3'内切核酸酶具有tRNA特异性,可在单个内切核酸步骤中催化前体tRNA的加工。通过色谱法鉴定出了该活性的两种同工酶(p45和p60)。第二种内切核酸酶p55依赖单价离子,并在成熟3'末端下游约三个核苷酸处切割。所有纯化的3'-前体tRNA酶都接受同源和异源前体tRNA底物。携带5'前导序列的前体tRNA加工效率与缺乏该5'前导序列的前体tRNA几乎相同。携带CCA 3'序列的成熟tRNA和在成熟结构域中携带突变的tRNA假基因产物由3'外切核酸酶加工,而非3'内切核酸酶。特异性内切核酸酶p45/p60可区分作为3'侧翼被切割的UUUOH和成熟tRNA不被切割的CCA 3'末端。这项研究表明,几种3'-前体tRNA酶在体外对tRNA前体具有活性,因此可能在酵母的前体tRNA 3'加工过程中发挥作用,部分是以协同方式。

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