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小鼠睾丸脑RNA结合蛋白/转位蛋白选择性结合纤维鞘蛋白甘油醛-3-磷酸脱氢酶-S的信使核糖核酸,并在体外抑制其翻译。

Mouse testis brain RNA-binding protein/translin selectively binds to the messenger RNA of the fibrous sheath protein glyceraldehyde 3-phosphate dehydrogenase-S and suppresses its translation in vitro.

作者信息

Yang Juxiang, Chennathukuzhi Vargheese, Miki Kiyoshi, O'Brien Deborah A, Hecht Norman B

机构信息

Center for Research on Reproduction and Women's Health, University of Pennsylvania School of Medicine, Philadelphia, Pennsylvania 19104, USA.

出版信息

Biol Reprod. 2003 Mar;68(3):853-9. doi: 10.1095/biolreprod.102.008631.

Abstract

The testis brain RNA-binding protein (TB-RBP/translin) is a DNA- and RNA-binding protein with multiple functions. As an RNA-binding protein, TB-RBP binds to conserved sequence elements often present in the 3' untranslated regions (UTRs) of specific mRNAs modulating their translation and transport. To identify additional mRNA targets of TB-RBP, immunoprecipitation and reverse transcription-polymerase chain reaction (RT-PCR) assays were carried out using an affinity-purified antibody to TB-RBP with testicular extracts. Gapds mRNA was found to be selectively precipitated in a TB-RBP-mRNA complex. Consistent with the delayed translation of GAPDS and the subcellular ribonucleoprotein location of TB-RBP, polysomal gradient analysis showed that most of the Gapds mRNA in adult testis extracts was present in the nonpolysomal fractions. In vitro translation assays revealed that Gapds mRNA translation was inhibited by recombinant TB-RBP or by a TB-RBP mutant protein, Nb, capable of binding RNA. No inhibition was seen with mutant forms of TB-RBP lacking domains required for RNA binding, including the TB-RBP Cb mutant and the C-terminal-truncated form of TB-RBP that disrupts the leucine zipper. As an additional indicator of the specificity of TB-RBP inhibition of Gapds mRNA translation, a putative TB-RBP binding H-element was deleted from the 5' UTR of the Gapds mRNA. No translational inhibition by recombinant TB-RBP was seen with Gapds mRNA lacking the H element. These data suggest that TB-RBP is involved in the posttranscriptional regulation of Gapds gene expression during spermiogenesis. Moreover, the Gapds mRNA is the first mRNA shown to have a functional TB-RBP binding site in its 5' UTR.

摘要

睾丸脑RNA结合蛋白(TB-RBP/转铁蛋白)是一种具有多种功能的DNA和RNA结合蛋白。作为一种RNA结合蛋白,TB-RBP与特定mRNA的3'非翻译区(UTR)中常出现的保守序列元件结合,调节其翻译和转运。为了鉴定TB-RBP的其他mRNA靶点,使用针对TB-RBP的亲和纯化抗体与睾丸提取物进行免疫沉淀和逆转录聚合酶链反应(RT-PCR)分析。发现Gapds mRNA在TB-RBP-mRNA复合物中被选择性沉淀。与GAPDS翻译延迟和TB-RBP的亚细胞核糖核蛋白定位一致,多核糖体梯度分析表明,成年睾丸提取物中的大多数Gapds mRNA存在于非多核糖体组分中。体外翻译分析表明,重组TB-RBP或能够结合RNA的TB-RBP突变蛋白Nb可抑制Gapds mRNA的翻译。缺乏RNA结合所需结构域的TB-RBP突变形式,包括TB-RBP Cb突变体和破坏亮氨酸拉链的TB-RBP C末端截短形式,未观察到抑制作用。作为TB-RBP抑制Gapds mRNA翻译特异性的另一个指标,从Gapds mRNA的5'UTR中删除了一个假定的TB-RBP结合H元件。缺乏H元件的Gapds mRNA未观察到重组TB-RBP的翻译抑制作用。这些数据表明,TB-RBP参与精子发生过程中Gapds基因表达的转录后调控。此外,Gapds mRNA是第一个在其5'UTR中具有功能性TB-RBP结合位点的mRNA。

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