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Characterization of the mammalian DEAD-box protein DDX5 reveals functional conservation with S. cerevisiae ortholog Dbp2 in transcriptional control and glucose metabolism

机译:哺乳动物DEAD-box蛋白DDX5的表征揭示了酿酒酵母直系同源物Dbp2在转录控制和葡萄糖代谢中的功能保守性

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摘要

DEAD-box proteins are a class of nonprocessive RNA helicases that dynamically modulate the structure of RNA and ribonucleoprotein complexes (RNPs). However, the precise roles of individual members are not well understood. Work from our laboratory revealed that the DEAD-box protein Dbp2 in Saccharomyces cerevisiae is an active RNA helicase in vitro that functions in transcription by promoting mRNP assembly, repressing cryptic transcription initiation, and regulating long noncoding RNA activity. Interestingly, Dbp2 is also linked to glucose sensing and hexose transporter gene expression. DDX5 is the mammalian ortholog of Dbp2 that has been implicated in cancer and metabolic syndrome, suggesting that the role of Dbp2 and DDX5 in glucose metabolic regulation is conserved. Herein, we present a refined biochemical and biological comparison of yeast Dbp2 and human DDX5 enzymes. We find that human DDX5 possesses a 10-fold higher unwinding activity than Dbp2, which is partially due to the presence of a mammalian/avian specific C-terminal extension. Interestingly, ectopic expression of DDX5 rescues the cold sensitivity, cryptic initiation defects, and impaired glucose import in dbp2Δ cells, suggesting functional conservation. Consistently, we show that DDX5 promotes glucose uptake and glycolysis in mouse AML12 hepatocyte cells, suggesting that mammalian DDX5 and S. cerevisiae Dbp2 share conserved roles in cellular metabolism.
机译:DEAD-box蛋白是一类非加工性RNA解旋酶,可动态调节RNA和核糖核蛋白复合物(RNP)的结构。但是,单个成员的确切角色还没有被很好地理解。我们实验室的工作表明,酿酒酵母中的DEAD-box蛋白Dbp2是一种​​活性RNA解旋酶,在体外可通过促进mRNP装配,抑制隐性转录起始并调节长的非编码RNA活性而在转录中起作用。有趣的是,Dbp2还与葡萄糖感测和己糖转运蛋白基因表达有关。 DDX5是Dbp2的哺乳动物直系同源基因,已与癌症和代谢综合症有关,表明Dbp2和DDX5在葡萄糖代谢调节中的作用是保守的。在这里,我们提出了酵母Dbp2和人类DDX5酶的精制的生化和生物学比较。我们发现,人DDX5的放卷活性比Dbp2高10倍,这部分是由于存在哺乳动物/禽类特定的C末端延伸所致。有趣的是,DDX5的异位表达可挽救dbp2Δ细胞的冷敏感性,隐秘的起始缺陷和葡萄糖导入受损,提示其功能保守。一致地,我们显示DDX5促进小鼠AML12肝细胞中的葡萄糖摄取和糖酵解,表明哺乳动物DDX5和酿酒酵母Dbp2在细胞代谢中共享保守的作用。

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