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蛋白激酶Cα使二酰基甘油激酶ζ磷酸化并对其进行负调控。

Protein kinase C alpha phosphorylates and negatively regulates diacylglycerol kinase zeta.

作者信息

Luo Bai, Prescott Stephen M, Topham Matthew K

机构信息

Huntsman Cancer Institute, and Department of Oncological Sciences, University of Utah, Salt Lake City, Utah 84112, USA.

出版信息

J Biol Chem. 2003 Oct 10;278(41):39542-7. doi: 10.1074/jbc.M307153200. Epub 2003 Jul 30.

Abstract

Diacylglycerol kinase (DGK) terminates diacylglycerol (DAG) signaling by phosphorylating DAG to produce phosphatidic acid, which also has signaling properties. Thus, precise control of DGK activity is essential for proper signal transduction. We demonstrated previously that a peptide corresponding to the myristoylated alanine-rich C kinase substrate (MARCKS) phosphorylation site domain (PSD) in DGK zeta was phosphorylated in vitro by an active fragment of protein kinase C (PKC). In the present study, we tested full-length DGK zeta and found that PKC alpha phosphorylated DGK zeta on serines within the MARCKS PSD in vitro and in vivo. DGK zeta also coimmunoprecipitated with PKC alpha, suggesting that they reside in a regulated signaling complex. We then tested whether phosphorylation affected DAG kinase activity. We found that a mutant (DGK zeta S/D) in which serines within the MARCKS PSD were altered to aspartates (to mimic phosphorylation) had lower activity compared with wild-type DGK zeta or a control mutant (DGK zeta S/N) in which the same serines were changed to asparagines. Furthermore, activation of PKC alpha by phorbol 12-myristate 13-acetate inhibited the activity of wild-type DGK zeta, but not DGK zeta S/D, in human embryonic kidney 293 cells. These results suggest that by phosphorylating the MARCKS PSD, PKC alpha attenuates DGK zeta activity. Supporting this, we found that cells expressing DGK zeta S/D had higher DAG levels and grew more rapidly compared with cells expressing DGK zeta S/N that could not be phosphorylated. Taken together, these results indicate that PKC alpha phosphorylates DGK zeta in cells, and this phosphorylation inhibits its kinase activity to remove cellular DAG, thereby affecting cell growth.

摘要

二酰基甘油激酶(DGK)通过将二酰基甘油(DAG)磷酸化生成磷脂酸来终止DAG信号传导,而磷脂酸也具有信号传导特性。因此,精确控制DGK活性对于正确的信号转导至关重要。我们之前证明,与DGK ζ中肉豆蔻酰化富含丙氨酸的C激酶底物(MARCKS)磷酸化位点结构域(PSD)相对应的肽段在体外可被蛋白激酶C(PKC)的活性片段磷酸化。在本研究中,我们测试了全长DGK ζ,发现PKCα在体外和体内均可使MARCKS PSD内的丝氨酸磷酸化。DGK ζ也与PKCα共免疫沉淀,表明它们存在于一个受调控的信号复合物中。然后我们测试了磷酸化是否影响DAG激酶活性。我们发现,与野生型DGK ζ或对照突变体(DGK ζ S/N,其中相同的丝氨酸被替换为天冬酰胺)相比,MARCKS PSD内的丝氨酸被替换为天冬氨酸(以模拟磷酸化)的突变体(DGK ζ S/D)活性较低。此外,佛波醇12 - 肉豆蔻酸酯13 - 乙酸酯激活PKCα可抑制人胚肾293细胞中野生型DGK ζ的活性,但不影响DGK ζ S/D的活性。这些结果表明,PKCα通过磷酸化MARCKS PSD来减弱DGK ζ的活性。支持这一观点的是,我们发现与不能被磷酸化的表达DGK ζ S/N 的细胞相比,表达DGK ζ S/D 的细胞具有更高的DAG水平且生长更快。综上所述,这些结果表明PKCα在细胞中使DGK ζ磷酸化,这种磷酸化抑制其激酶活性以去除细胞内的DAG,从而影响细胞生长。

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