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鞘氨醇长链碱植物鞘氨醇可激活酿酒酵母中的AGC型蛋白激酶,包括Ypk1、Ypk2和Sch9。

The sphingoid long chain base phytosphingosine activates AGC-type protein kinases in Saccharomyces cerevisiae including Ypk1, Ypk2, and Sch9.

作者信息

Liu Ke, Zhang Xiping, Lester Robert L, Dickson Robert C

机构信息

Department of Molecular and Cellular Biochemistry, University of Kentucky College of Medicine, Lexington, 40536, USA.

出版信息

J Biol Chem. 2005 Jun 17;280(24):22679-87. doi: 10.1074/jbc.M502972200. Epub 2005 Apr 19.

Abstract

The Pkh1 protein kinase of Saccharomyces cerevisiae, a homolog of the mammalian 3-phosphoinositide-dependent kinase (PDK1), regulates downstream AGC-type protein kinases including Ypk1/2 and Pkc1, which control cell wall integrity, growth, and other processes. Phytosphingosine (PHS), a sphingoid long chain base, is hypothesized to be a lipid activator of Pkh1 and thereby controls the activity of Ypk1/2. Here we present biochemical evidence supporting this hypothesis, and in addition we demonstrate that PHS also stimulates autophosphorylation and activation of Ypk1/2. Greatest stimulation of Ypk1/2 phosphorylation and activity are achieved by inclusion of both PHS and Pkh1 in an in vitro kinase reaction. We also demonstrate for the first time that Pkh1 phosphorylates the Sch9 protein kinase in vitro and that such phosphorylation is stimulated by PHS. This is the first biochemical demonstration of Sch9 activators, and the results further support roles for long chain bases in heat stress resistance in addition to implying roles in chronological aging and cell size determination, since Sch9 functions in these processes. Thus, our data support a model in which PHS, rather than simply being an upstream activator of Pkh1, also activates kinases that are downstream targets of Pkh1 including Ypk1/2 and Sch9.

摘要

酿酒酵母的Pkh1蛋白激酶是哺乳动物3-磷酸肌醇依赖性激酶(PDK1)的同源物,它调节包括Ypk1/2和Pkc1在内的下游AGC型蛋白激酶,这些激酶控制细胞壁完整性、生长及其他过程。植物鞘氨醇(PHS)是一种鞘脂长链碱,被认为是Pkh1的脂质激活剂,从而控制Ypk1/2的活性。在此,我们提供了支持这一假设的生化证据,此外,我们还证明PHS也能刺激Ypk1/2的自磷酸化和激活。在体外激酶反应中同时加入PHS和Pkh1,能最大程度地刺激Ypk1/2的磷酸化和活性。我们还首次证明Pkh1在体外能磷酸化Sch9蛋白激酶,且这种磷酸化受PHS刺激。这是Sch9激活剂的首次生化证明,结果进一步支持了长链碱在耐热应激中的作用,此外还暗示其在时序衰老和细胞大小决定中的作用,因为Sch9在这些过程中发挥作用。因此,我们的数据支持这样一个模型,即PHS不仅是Pkh1的上游激活剂,还能激活Pkh1的下游靶点激酶,包括Ypk1/2和Sch9。

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