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延伸因子-1α基因家族成员S1在哺乳动物脑、心脏和肌肉中的组织特异性表达。

Tissue-specific expression in mammalian brain, heart, and muscle of S1, a member of the elongation factor-1 alpha gene family.

作者信息

Lee S, Francoeur A M, Liu S, Wang E

机构信息

Department of Medicine, McGill University, Montréal, Québec, Canada.

出版信息

J Biol Chem. 1992 Nov 25;267(33):24064-8.

PMID:1385435
Abstract

Elongation factor-1 alpha (EF-1 alpha) is an ubiquitous protein that functions in peptide elongation during mRNA translation. We previously reported the isolation of a rat S1 protein that is antigenically related to statin, a nonproliferation-specific protein; this S1 gene shares a high degree of homology to EF-1 alpha. We constructed specific riboprobes to the two genes, based on the difference in the 3' noncoding regions of both S1 and EF-1 alpha mRNAs. Northern analysis and RNase protection assays have revealed that S1 mRNA is present only in brain, heart, and muscle, while EF-1 alpha mRNA has been detected in all tissues surveyed so far. The same tissue specificity has been observed in mouse, suggesting that S1 expression is conserved between these two mammalian species. S1 transcript was detected in late brain embryogenesis (day 20), but in lower amounts than in 3-month-old adult brain. We show that the relative levels of both S1 and EF-1 alpha transcripts and their respective tissue abundances remain unchanged during the aging process. The function of S1 is not yet known; but these results suggest that it may be involved in specific control mechanisms for protein synthesis in tissues where cells (i.e. neurons and myocytes) are permanently locked in a state of nonproliferation.

摘要

延伸因子-1α(EF-1α)是一种普遍存在的蛋白质,在mRNA翻译过程中的肽链延伸中发挥作用。我们之前报道了一种大鼠S1蛋白的分离,该蛋白与他汀(一种非增殖特异性蛋白)存在抗原相关性;这个S1基因与EF-1α具有高度同源性。基于S1和EF-1α mRNA 3'非编码区的差异,我们构建了针对这两个基因的特异性核糖探针。Northern分析和核糖核酸酶保护试验表明,S1 mRNA仅存在于脑、心脏和肌肉中,而EF-1α mRNA在迄今为止检测的所有组织中均有发现。在小鼠中也观察到了相同的组织特异性,这表明S1的表达在这两种哺乳动物物种之间是保守的。在脑胚胎发育后期(第20天)检测到了S1转录本,但含量低于3个月大的成年脑。我们发现,在衰老过程中,S1和EF-1α转录本的相对水平及其各自的组织丰度保持不变。S1的功能尚不清楚;但这些结果表明,它可能参与了细胞(即神经元和心肌细胞)永久处于非增殖状态的组织中蛋白质合成的特定调控机制。

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