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酵母scERV1和scERV2基因的功能比较

Functional comparison of the yeast scERV1 and scERV2 genes.

作者信息

Stein G, Lisowsky T

机构信息

Botanisches Institut, Heinrich-Heine-Universität Düsseldorf, Germany.

出版信息

Yeast. 1998 Jan 30;14(2):171-80. doi: 10.1002/(SICI)1097-0061(19980130)14:2<171::AID-YEA209>3.0.CO;2-U.

Abstract

The yeast scERV1 gene is the first representative of a new emerging gene family. Its gene product is essential for the yeast cell and is involved in the biogenesis of mitochondria and the regulation of the cell cycle. Recently the general importance of the gene for the eukaryotic cell was shown by the identification of a structural and functional human homologue. The homologous mammalian ALR (augmenter of liver regeneration) genes from man, mouse and rat are important for different developmental stages of the organism as for example in spermatogenesis and the regeneration of damaged liver organs. Latest research identified an intron with an unusual 3' branch site in the 5' region of the yeast scERV1 gene. Analysis of the now available complete genome sequence from Saccharomyces cerevisiae identified a second yeast gene with homologies to scERV1 on chromosome 16. The corresponding gene product has a length of 196 amino acids similar to the 189 residues of the scERV1 protein and exhibits 30% identical amino acid residues in the highly conserved carboxy-terminal part of the polypeptides. Because of the structural similarities the new gene will be termed scERV2 from now on. For the scERV1 gene product it has just been shown that it is associated with yeast mitochondria. Analysis of the amino-terminal part of the putative scERV2 protein also identifies a typical leader sequence for import into mitochondria. The comparison of cDNA and genomic DNA from the scERV2 gene shows that no intron is present in this gene. To investigate the functional relation between the two yeast genes disruption experiments and complementation studies of mutants from scERV1 were performed. In addition the expression of messenger RNA under 15 different growth conditions was investigated by detailed Northern hybridization studies. Both genes show a complex and distinct expression pattern for their transcripts and are highly regulated under different physiological conditions. Moreover correct and efficient splicing of the transcript from the scERV1 gene was found to vary with the physiological state of the yeast cell, as further verified by reverse transcription-polymerase chain reaction analysis of transcripts from galactose-grown yeast cells.

摘要

酵母scERV1基因是一个新兴基因家族的首个代表。其基因产物对酵母细胞至关重要,参与线粒体的生物合成及细胞周期调控。最近,通过鉴定出一个结构和功能上的人类同源物,显示了该基因对真核细胞的普遍重要性。来自人类、小鼠和大鼠的同源哺乳动物ALR(肝脏再生增强因子)基因,对生物体的不同发育阶段很重要,例如在精子发生和受损肝脏器官的再生过程中。最新研究在酵母scERV1基因的5'区域鉴定出一个具有不寻常3'分支位点的内含子。对现有的酿酒酵母完整基因组序列分析,在16号染色体上鉴定出另一个与scERV1具有同源性的酵母基因。相应的基因产物长度为196个氨基酸,与scERV1蛋白的189个残基相似,并且在多肽高度保守的羧基末端部分有30%相同的氨基酸残基。由于结构相似性,这个新基因从现在起将被命名为scERV2。对于scERV1基因产物,刚刚发现它与酵母线粒体相关。对假定的scERV2蛋白氨基末端部分的分析也鉴定出一个典型的导入线粒体的前导序列。scERV2基因的cDNA和基因组DNA比较表明,该基因中不存在内含子。为了研究这两个酵母基因之间的功能关系,进行了scERV1突变体的破坏实验和互补研究。此外,通过详细的Northern杂交研究,调查了在15种不同生长条件下信使RNA的表达情况。两个基因的转录本都显示出复杂且独特的表达模式,并且在不同生理条件下受到高度调控。此外,发现scERV1基因转录本正确且高效的剪接会随酵母细胞的生理状态而变化,半乳糖培养的酵母细胞转录本的逆转录-聚合酶链反应分析进一步证实了这一点。

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