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五个假定的酵母RNA解旋酶基因的鉴定。

Identification of five putative yeast RNA helicase genes.

作者信息

Chang T H, Arenas J, Abelson J

机构信息

Division of Biology, California Institute of Technology, Pasadena 91125.

出版信息

Proc Natl Acad Sci U S A. 1990 Feb;87(4):1571-5. doi: 10.1073/pnas.87.4.1571.

Abstract

The RNA helicase gene family encodes a group of eight homologous proteins that share regions of sequence similarity. This group of evolutionarily conserved proteins presumably all utilize ATP (or some other nucleoside triphosphate) as an energy source for unwinding double-stranded RNA. Members of this family have been implicated in a variety of physiological functions in organisms ranging from Escherichia coli to human, such as translation initiation, mitochondrial mRNA splicing, ribosomal assembly, and germinal line cell differentiation. We have applied polymerase chain reaction technology to search for additional members of the RNA helicase family in the yeast Saccharomyces cerevisiae. Using degenerate oligonucleotide primers designed to amplify DNA fragments flanked by the highly conserved motifs V L D E A D and Y I H R I G, we have detected five putative RNA helicase genes. Northern and Southern blot analyses demonstrated that these genes are single copy and expressed in yeast. Several members of the RNA helicase family share sequence identity ranging from 49.2% to 67.2%, suggesting that they are functionally related. The discovery of such a multitude of putative RNA helicase genes in yeast suggests that RNA helicase activities are involved in a variety of fundamentally important biological processes.

摘要

RNA解旋酶基因家族编码一组八个同源蛋白,这些蛋白共享序列相似区域。这组进化上保守的蛋白大概都利用ATP(或其他一些核苷三磷酸)作为解开双链RNA的能量来源。该家族成员已被证明参与了从大肠杆菌到人类等多种生物的各种生理功能,如翻译起始、线粒体mRNA剪接、核糖体组装和生殖系细胞分化。我们应用聚合酶链反应技术在酿酒酵母中寻找RNA解旋酶家族的其他成员。使用设计用于扩增由高度保守的基序VLDEAD和YIHRI G侧翼的DNA片段的简并寡核苷酸引物,我们检测到五个推定的RNA解旋酶基因。Northern和Southern印迹分析表明这些基因是单拷贝的且在酵母中表达。RNA解旋酶家族的几个成员共享49.2%至67.2%的序列同一性,表明它们在功能上相关。在酵母中发现如此众多的推定RNA解旋酶基因表明RNA解旋酶活性参与了各种至关重要的生物学过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22d5/53517/da51b92b0974/pnas01029-0322-a.jpg

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