首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Cold stress-induced protein Rbm3 binds 60S ribosomal subunits, alters microRNA levels, and enhances global protein synthesis.
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Cold stress-induced protein Rbm3 binds 60S ribosomal subunits, alters microRNA levels, and enhances global protein synthesis.

机译:冷应激诱导的蛋白质Rbm3结合60S核糖体亚基,改变microRNA水平,并增强整体蛋白质合成。

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The expression of Rbm3, a glycine-rich RNA-binding protein, is enhanced under conditions of mild hypothermia, and Rbm3 has been postulated to facilitate protein synthesis at colder temperatures. To investigate this possibility, Rbm3 was overexpressed as a c-Myc fusion protein in mouse neuroblastoma N2a cells. Cells expressing this fusion protein showed a 3-fold increase in protein synthesis at both 37 degrees C and 32 degrees C compared with control cells. Although polysome profiles of cells expressing the fusion protein and control cells were similar, several differences were noted, suggesting that Rbm3 might enhance the association of 40S and 60S ribosomal subunits at 32 degrees C. Studies to assess a direct interaction of Rbm3 with ribosomes showed that a fraction of Rbm3 was associated with 60S ribosomal subunits in an RNA-independent manner. It appeared unlikely that this association could explain the global enhancement of protein synthesis, however, because cells expressing the Rbm3 fusion protein showed no substantial increase in the size of their monosome and polysome peaks, suggesting that similar numbers of mRNAs were being translated at approximately the same rates. In contrast, a complex that sedimented between the top of the gradient and 40S subunits was less abundant in cells expressing recombinant Rbm3. Further analysis showed that the RNA component of this fraction was microRNA. We discuss the possibility that Rbm3 expression alters global protein synthesis by affecting microRNA levels and suggest that both Rbm3 and microRNAs are part of a homeostatic mechanism that regulates global levels of protein synthesis under normal and cold-stress conditions.
机译:Rbm3(一种富含甘氨酸的RNA结合蛋白)的表达在温和的低温条件下会增强,并且已假定Rbm3可以在较低温度下促进蛋白质合成。为了调查这种可能性,Rbm3作为c-Myc融合蛋白在小鼠神经母细胞瘤N2a细胞中过表达。与对照细胞相比,表达这种融合蛋白的细胞在37摄氏度和32摄氏度下蛋白质合成显示增加了3倍。尽管表达融合蛋白的细胞与对照细胞的多核糖体图谱相似,但是注意到一些差异,这表明Rbm3可能会在32摄氏度下增强40S和60S核糖体亚基的缔合。评估Rbm3与核糖体直接相互作用的研究表明: Rbm3的一部分与RNA无关的方式与60S核糖体亚基相关。似乎这种联系不可能解释蛋白质合成的整体增强,但是,因为表达Rbm3融合蛋白的细胞在其单核糖体和多核糖体峰的大小上没有显示出实质性的增加,这表明相似数量的mRNA在相同的价格。相反,在表达重组Rbm3的细胞中,沉淀在梯度顶部和40S亚基之间的复合物含量较低。进一步分析表明,该级分的RNA成分是microRNA。我们讨论Rbm3表达通过影响microRNA水平改变全球蛋白质合成的可能性,并建议Rbm3和microRNAs都是稳态机制的一部分,该机制调节正常和冷应激条件下蛋白质合成的总体水平。

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