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小鼠精子发生过程中鱼精蛋白1基因的时间性翻译调控。

Temporal translational regulation of the protamine 1 gene during mouse spermatogenesis.

作者信息

Braun R E

机构信息

Department of Genetics, University of Washington, Seattle.

出版信息

Enzyme. 1990;44(1-4):120-8. doi: 10.1159/000468752.

Abstract

Temporal translational control is an important mechanism of gene regulation during mouse spermatogenesis. Studies of the protamine 1 gene, one member of a class of translationally regulated genes, have shown that it is first transcribed post-meiotically in round spermatids, and that the mRNA is stored in an untranslatable form as an inactive ribonucleoprotein particle for up to 1 week before it is translated. The analysis of the expression of fusions between the protamine gene and reporter genes in transgenic mice has demonstrated that sequences mapping in the 3'-untranslated region of the protamine mRNA are sufficient to confer protamine-like translational regulation on the chimeric mRNAs. It is proposed that sequence-specific RNA-binding proteins interact with the protamine 3'-untranslated region and mediate the temporal translational control. Future progress at elucidating the mechanism of translational regulation will come from the identification of translational control factors and their study in vitro and in vivo.

摘要

时间性翻译调控是小鼠精子发生过程中基因调控的一种重要机制。对一类翻译调控基因中的一个成员鱼精蛋白1基因的研究表明,它在圆形精子细胞减数分裂后首次转录,并且mRNA以不可翻译的形式作为无活性核糖核蛋白颗粒储存长达1周,然后才进行翻译。对转基因小鼠中鱼精蛋白基因与报告基因融合体表达的分析表明,位于鱼精蛋白mRNA 3'非翻译区的序列足以赋予嵌合mRNA类似鱼精蛋白的翻译调控。有人提出,序列特异性RNA结合蛋白与鱼精蛋白3'非翻译区相互作用并介导时间性翻译调控。阐明翻译调控机制的未来进展将来自于翻译控制因子的鉴定及其在体外和体内的研究。

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