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小鼠c-mos信使核糖核酸5'-非翻译区的元件抑制下游编码序列的翻译。

Elements in the murine c-mos messenger RNA 5'-untranslated region repress translation of downstream coding sequences.

作者信息

Steel L F, Telly D L, Leonard J, Rice B A, Monks B, Sawicki J A

机构信息

Kimmel Cancer Institute, Thomas Jefferson University, Philadelphia, Pennsylvania 19107, USA.

出版信息

Cell Growth Differ. 1996 Oct;7(10):1415-24.

PMID:8891345
Abstract

Murine c-mos transcripts isolated from testes have 5'-untranslated regions (5'UTRs) of approximately 300 nucleotides with a series of four overlapping open reading frames (ORFs) upstream of the AUG codon that initiates the Mos ORF. Ovarian c-mos transcripts have shorter 5'UTRs (70-80 nucleotides) and contain only 1-2 of the upstream ORFs (uORFs). To test whether these 5'UTRs affect translational efficiency, we have constructed plasmids for the expression of chimeric transcripts with a mos-derived 5'UTR fused to the Escherichia coli beta-galactosidase coding region. Translational efficiency has been evaluated by measuring beta-galactosidase activity NIH3T3 cells transiently transfected with these plasmids and with plasmids where various mutations have been introduced into the 5'UTR. We show that the 5'UTR characteristic of testis-specific c-mos mRNA strongly represses translation relative to the translation of transcripts that contain a 5'UTR derived from beta-globin mRNA, and this is mainly due to the four uORFs. Each of the four upstream AUG triplets can be recognized as a start site for translation, and no single uAUG dominates the repressive effect. The uORFs repress translation by a mechanism that is not affected by the amino acid sequence in the COOH-terminal region of the uORF-encoded peptides. The very short uORF (AUGUGA) present in ovary-specific transcripts does not repress translation. Staining of testis sections from transgenic mice carrying chimeric beta-galactosidase transgene constructs, which contain a mos 5'UTR with or without the uATGs, suggests that the uORFs can dramatically change the pattern of expression in spermatogenic cells.

摘要

从睾丸中分离出的小鼠c-mos转录本具有约300个核苷酸的5'-非翻译区(5'UTR),在起始Mos开放阅读框(ORF)的AUG密码子上游有一系列四个重叠的开放阅读框(ORF)。卵巢c-mos转录本具有较短的5'UTR(70-80个核苷酸),并且仅包含1-2个上游ORF(uORF)。为了测试这些5'UTR是否影响翻译效率,我们构建了用于表达嵌合转录本的质粒,该嵌合转录本具有与大肠杆菌β-半乳糖苷酶编码区融合的mos衍生的5'UTR。通过测量用这些质粒以及将各种突变引入5'UTR的质粒瞬时转染的NIH3T3细胞中的β-半乳糖苷酶活性来评估翻译效率。我们表明,睾丸特异性c-mos mRNA的5'UTR相对于包含源自β-珠蛋白mRNA的5'UTR的转录本的翻译强烈抑制翻译,这主要是由于四个uORF。四个上游AUG三联体中的每一个都可以被识别为翻译起始位点,并且没有单个uAUG主导抑制作用。uORF通过一种不受uORF编码肽的COOH末端区域中氨基酸序列影响的机制抑制翻译。卵巢特异性转录本中存在的非常短的uORF(AUGUGA)不抑制翻译。携带嵌合β-半乳糖苷酶转基因构建体的转基因小鼠睾丸切片的染色表明,uORF可以显著改变生精细胞中的表达模式,该构建体包含有或没有uATG的mos 5'UTR。

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