Russo Joseph, Olivas Wendy M
Department of Biology, University of Missouri-St. Louis, St. Louis, MO 63121-4499.
Department of Biology, University of Missouri-St. Louis, St. Louis, MO 63121-4499
Mol Biol Cell. 2015 Mar 15;26(6):1015-29. doi: 10.1091/mbc.E14-10-1452. Epub 2015 Jan 28.
Puf proteins regulate mRNA degradation and translation through interactions with 3' untranslated regions (UTRs). Such regulation provides an efficient method to rapidly alter protein production during cellular stress. YHB1 encodes the only protein to detoxify nitric oxide in yeast. Here we show that YHB1 mRNA is destabilized by Puf1p, Puf4p, and Puf5p through two overlapping Puf recognition elements (PREs) in the YHB1 3' UTR. Overexpression of any of the three Pufs is sufficient to fully rescue wild-type decay in the absence of other Pufs, and overexpression of Puf4p or Puf5p can enhance the rate of wild-type decay. YHB1 mRNA decay stimulation by Puf proteins is also responsive to cellular stress. YHB1 mRNA is stabilized in galactose and high culture density, indicating inactivation of the Puf proteins. This condition-specific inactivation of Pufs is overcome by Puf overexpression, and Puf4p/Puf5p overexpression during nitric oxide exposure reduces the steady-state level of endogenous YHB1 mRNA, resulting in slow growth. Puf inactivation is not a result of altered expression or localization. Puf1p and Puf4p can bind target mRNA in inactivating conditions; however, Puf5p binding is reduced. This work demonstrates how multiple Puf proteins coordinately regulate YHB1 mRNA to protect cells from nitric oxide stress.
Puf蛋白通过与3'非翻译区(UTR)相互作用来调节mRNA的降解和翻译。这种调节提供了一种有效的方法,可在细胞应激期间快速改变蛋白质的产生。YHB1编码酵母中唯一能解毒一氧化氮的蛋白质。在这里,我们表明YHB1 mRNA通过YHB1 3'UTR中的两个重叠的Puf识别元件(PRE)被Puf1p、Puf4p和Puf5p destabilized。在没有其他Puf的情况下,三种Puf中的任何一种过表达都足以完全挽救野生型衰变,并且Puf4p或Puf5p的过表达可以提高野生型衰变的速率。Puf蛋白对YHB1 mRNA衰变的刺激也对细胞应激有反应。YHB1 mRNA在半乳糖和高培养密度下稳定,表明Puf蛋白失活。Puf的这种条件特异性失活可通过Puf过表达来克服,并且在一氧化氮暴露期间Puf4p/Puf5p过表达会降低内源性YHB1 mRNA的稳态水平,导致生长缓慢。Puf失活不是表达或定位改变的结果。Puf1p和Puf4p可以在失活条件下结合靶mRNA;然而,Puf5p的结合减少。这项工作证明了多种Puf蛋白如何协同调节YHB1 mRNA以保护细胞免受一氧化氮应激。