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线粒体生物发生通过 Hrr25 对 Puf3 的磷酸化作用被酪蛋白激酶 I 正向调控。

Mitochondrial Biogenesis Is Positively Regulated by Casein Kinase I Hrr25 Through Phosphorylation of Puf3 in .

机构信息

Department of Biological Sciences, University of New Orleans, Louisiana 70148.

Department of Biological Sciences, University of New Orleans, Louisiana 70148

出版信息

Genetics. 2020 Jun;215(2):463-482. doi: 10.1534/genetics.120.303191. Epub 2020 Apr 21.

Abstract

Mitochondrial biogenesis requires coordinated expression of genes encoding mitochondrial proteins, which in is achieved in part via post-transcriptional control by the Pumilio RNA-binding domain protein Puf3 Puf3 binds to the 3'-UTR of many messenger RNAs (mRNAs) that encode mitochondrial proteins, regulating their turnover, translation, and/or mitochondrial targeting. Puf3 hyperphosphorylation correlates with increased mitochondrial biogenesis; however, the kinase responsible for Puf3 phosphorylation is unclear. Here, we show that the casein kinase I protein Hrr25 negatively regulates Puf3 by mediating its phosphorylation. An mutation results in reduced phosphorylation of Puf3 and a deletion mutation reverses growth defects of mutant cells grown on medium with a nonfermentable carbon source. We show that Hrr25 directly phosphorylates Puf3, and that the interaction between Puf3 and Hrr25 is mediated through the N-terminal domain of Puf3 and the kinase domain of Hrr25 We further found that an mutation reduces GFP expression from GFP reporter constructs carrying the 3'-UTR of Puf3 targets. Downregulation of GFP expression due to an mutation can be reversed either by Δ or by mutations to the Puf3-binding sites in the 3'-UTR of the GFP reporter constructs. Together, our data indicate that Hrr25 is a positive regulator of mitochondrial biogenesis by phosphorylating Puf3 and inhibiting its function in downregulating target mRNAs encoding mitochondrial proteins.

摘要

线粒体生物发生需要协调表达编码线粒体蛋白的基因,这在一定程度上是通过 Pumilio RNA 结合域蛋白 Puf3 的转录后控制来实现的。Puf3 结合到许多编码线粒体蛋白的信使 RNA(mRNA)的 3'-UTR,调节它们的周转、翻译和/或线粒体靶向。Puf3 的过度磷酸化与线粒体生物发生的增加相关;然而,负责 Puf3 磷酸化的激酶尚不清楚。在这里,我们表明酪蛋白激酶 I 蛋白 Hrr25 通过介导其磷酸化来负调控 Puf3。 突变导致 Puf3 磷酸化减少,并且缺失突变逆转了在非发酵碳源培养基中生长的 突变细胞的生长缺陷。我们表明 Hrr25 直接磷酸化 Puf3,并且 Puf3 和 Hrr25 之间的相互作用是通过 Puf3 的 N 端结构域和 Hrr25 的激酶结构域介导的。我们还发现 突变减少了携带 Puf3 靶标 3'-UTR 的 GFP 报告构建体中 GFP 表达。由于 突变导致的 GFP 表达下调可以通过 Δ 或 GFP 报告构建体中 3'-UTR 的 Puf3 结合位点的突变来逆转。总之,我们的数据表明,Hrr25 通过磷酸化 Puf3 并抑制其下调编码线粒体蛋白的靶 mRNA 的功能,成为线粒体生物发生的正调节剂。

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