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人类Artemis中依赖DNA的蛋白激酶催化亚基的磷酸化位点

The DNA-dependent protein kinase catalytic subunit phosphorylation sites in human Artemis.

作者信息

Ma Yunmei, Pannicke Ulrich, Lu Haihui, Niewolik Doris, Schwarz Klaus, Lieber Michael R

机构信息

Department of Pathology, Norris Comprehensive Cancer Center, University of Southern California, Los Angeles, California 90089-9176, USA.

出版信息

J Biol Chem. 2005 Oct 7;280(40):33839-46. doi: 10.1074/jbc.M507113200. Epub 2005 Aug 10.

Abstract

Artemis protein has irreplaceable functions in V(D)J recombination and nonhomologous end joining (NHEJ) as a hairpin and 5' and 3' overhang endonuclease. The kinase activity of the DNA-dependent protein kinase catalytic subunit (DNA-PKcs) is necessary in activating Artemis as an endonuclease. Here we report that three basal phosphorylation sites and 11 DNA-PKcs phosphorylation sites within the mammalian Artemis are all located in the C-terminal domain. All but one of these phosphorylation sites deviate from the SQ or TQ motif of DNA-PKcs that was predicted previously from in vitro phosphorylation studies. Phosphatase-treated mammalian Artemis and Artemis that is mutated at the three basal phosphorylation sites still retain DNA-PKcs-dependent endonucleolytic activities, indicating that basal phosphorylation is not required for the activation. In vivo studies of Artemis lacking the C-terminal domain have been reported to be sufficient to complement V(D)J recombination in Artemis null cells. Therefore, the C-terminal domain may have a negative regulatory effect on the Artemis endonucleolytic activities, and phosphorylation by DNA-PKcs in the C-terminal domain may relieve this inhibition.

摘要

作为一种发夹及5'和3'突出端核酸内切酶,阿耳忒弥斯蛋白在V(D)J重组和非同源末端连接(NHEJ)中具有不可替代的功能。DNA依赖性蛋白激酶催化亚基(DNA-PKcs)的激酶活性对于激活作为核酸内切酶的阿耳忒弥斯是必需的。在此我们报告,哺乳动物阿耳忒弥斯蛋白内的三个基础磷酸化位点和11个DNA-PKcs磷酸化位点均位于C末端结构域。除其中一个位点外,所有这些磷酸化位点均偏离先前体外磷酸化研究预测的DNA-PKcs的SQ或TQ基序。经磷酸酶处理的哺乳动物阿耳忒弥斯蛋白以及在三个基础磷酸化位点发生突变的阿耳忒弥斯蛋白仍保留DNA-PKcs依赖性核酸内切酶活性,这表明基础磷酸化对于激活并非必需。据报道,对缺乏C末端结构域的阿耳忒弥斯蛋白进行体内研究足以补充阿耳忒弥斯基因敲除细胞中的V(D)J重组。因此,C末端结构域可能对阿耳忒弥斯核酸内切酶活性具有负调控作用,而C末端结构域中DNA-PKcs的磷酸化可能会解除这种抑制作用。

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