Ahmed Ruhi, Duncan Roger F
University of Southern California School of Pharmacy, Department of Molecular Pharmacology and Toxicology and School of Medicine, Los Angeles, California 90033, USA.
J Biol Chem. 2004 Nov 26;279(48):49919-30. doi: 10.1074/jbc.M404681200. Epub 2004 Sep 3.
Heat shock in Drosophila results in repression of most normal (non-heat shock) mRNA translation and the preferential translation of the heat shock mRNAs. The sequence elements that confer preferential translation have been localized to the 5'-untranslated region (5'-UTR) for Hsp22 and Hsp70 mRNAs (in Drosophila). Hsp90 mRNA is unique among the heat shock mRNAs in having extensive secondary structure in its 5'-UTR and being abundantly represented in the non-heat shocked cell. In this study, we show that Hsp90 mRNA translation is inefficient at normal growth temperature, and substantially activated by heat shock. Its preferential translation is not based on an IRES-mediated translation pathway, because overexpression of eIF4E-BP inhibits its translation (and the translation of Hsp70 mRNA). The ability of Hsp90 mRNA to be preferentially translated is conferred by its 5'-UTR, but, in contrast to Hsp22 and -70, is primarily influenced by nucleotides close to the AUG initiation codon. We present a model to account for Hsp90 mRNA translation, incorporating results indicating that heat shock inhibits eIF4F activity, and that Hsp90 mRNA translation is sensitive to eIF4F inactivation.
果蝇中的热休克会导致大多数正常(非热休克)mRNA的翻译受到抑制,而热休克mRNA则优先被翻译。赋予优先翻译能力的序列元件已定位到果蝇中Hsp22和Hsp70 mRNA的5'-非翻译区(5'-UTR)。Hsp90 mRNA在热休克mRNA中是独特的,其5'-UTR具有广泛的二级结构,并且在非热休克细胞中大量存在。在本研究中,我们表明Hsp90 mRNA在正常生长温度下翻译效率低下,而热休克可使其显著激活。其优先翻译并非基于内部核糖体进入位点(IRES)介导的翻译途径,因为eIF4E-BP的过表达会抑制其翻译(以及Hsp70 mRNA的翻译)。Hsp90 mRNA优先翻译的能力由其5'-UTR赋予,但与Hsp22和Hsp70不同的是,主要受靠近AUG起始密码子的核苷酸影响。我们提出了一个解释Hsp90 mRNA翻译的模型,纳入了表明热休克抑制eIF4F活性以及Hsp90 mRNA翻译对eIF4F失活敏感的结果。