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牛核糖核酸酶MRP在置换环区域切割不同的牛线粒体RNA序列。

Bovine RNase MRP cleaves the divergent bovine mitochondrial RNA sequence at the displacement-loop region.

作者信息

Dairaghi D J, Clayton D A

机构信息

Department of Developmental Biology, Stanford University School of Medicine, CA 94305-5427.

出版信息

J Mol Evol. 1993 Oct;37(4):338-46. doi: 10.1007/BF00178864.

Abstract

RNase MRP is a site-specific ribonucleoprotein endoribonuclease that cleaves mitochondrial RNA from the origin of leading-strand DNA synthesis contained within the displacement-loop region. Bovine mitochondrial DNA maintains the typical gene content and order of mammalian mitochondrial DNAs but differs in the nature of sequence conservation within this displacement-loop regulatory region. This markedly different sequence arrangement raises the issue of the degree to which a bovine RNase MRP would reflect the physical and functional properties ascribed to the enzymes previously characterized from mouse and human. We find that bovine RNase MRP exists as a ribonucleoprotein, with an RNA component of 279 nucleotides that is homologous to that of mouse or human RNase MRP RNA. Characterization of the nuclear gene for bovine RNase MRP RNA showed conservation of sequence extending 5' of the RNase MRP RNA coding sequence, including the presence of a cis-acting element known to be important for the expression of some mitochondrial protein-coding nuclear genes. Bovine or mouse RNase MRP cleaves a standard mouse mitochondrial RNA substrate in the same manner; each also cleaves a bovine mitochondrial RNA substrate identically. Since bovine and mouse RNase MRPs process both bovine and mouse substrates, we conclude that the structural features of the mitochondrial RNA substrate required for enzymatic cleavage have been well conserved despite significant overall primary sequence divergence. Inspection of the bovine RNA substrate reveals conservation of only the most critical portion of the primary sequence as indicated by earlier studies with mouse and human RNase MRPs.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

核糖核酸酶MRP是一种位点特异性核糖核蛋白内切核糖核酸酶,它从置换环区域内的前导链DNA合成起点切割线粒体RNA。牛线粒体DNA保持了哺乳动物线粒体DNA的典型基因含量和顺序,但在这个置换环调控区域内的序列保守性质有所不同。这种明显不同的序列排列引发了一个问题,即牛核糖核酸酶MRP在多大程度上会反映出先前从小鼠和人类中鉴定出的酶的物理和功能特性。我们发现牛核糖核酸酶MRP以核糖核蛋白的形式存在,其RNA成分有279个核苷酸,与小鼠或人类核糖核酸酶MRP RNA同源。对牛核糖核酸酶MRP RNA的核基因进行表征显示,在核糖核酸酶MRP RNA编码序列5'端延伸的序列具有保守性,包括存在一个已知对某些线粒体蛋白质编码核基因表达很重要的顺式作用元件。牛或小鼠核糖核酸酶MRP以相同方式切割标准的小鼠线粒体RNA底物;每种酶对牛线粒体RNA底物的切割方式也相同。由于牛和小鼠核糖核酸酶MRP都能处理牛和小鼠的底物,我们得出结论,尽管总体一级序列存在显著差异,但酶促切割所需的线粒体RNA底物的结构特征却得到了很好的保守。对牛RNA底物的检查显示,正如早期对小鼠和人类核糖核酸酶MRP的研究所表明的,只有一级序列中最关键的部分具有保守性。(摘要截短于250字)

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