Structured DNA promotes phosphorylation of p53 by DNA-dependent protein kinase at serine 9 and threonine 18.

Sébastien Soubeyrand, Caroline Schild-Poulter, Robert J G Haché
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引用次数: 31

Abstract

Phosphorylation at multiple sites within the N-terminus of p53 promotes its dissociation from hdm2/mdm2 and stimulates its transcriptional regulatory potential. The large phosphoinositide 3-kinase-like kinases ataxia telangiectasia mutated gene product and the ataxia telangectasia and RAD-3-related kinase promote phosphorylation of human p53 at Ser15 and Ser20, and are required for the activation of p53 following DNA damage. DNA-dependent protein kinase (DNA-PK) is another large phosphoinositide 3-kinase-like kinase with the potential to phosphorylate p53 at Ser15, and has been proposed to enhance phosphorylation of these sites in vivo. Moreover, recent studies support a role for DNA-PK in the regulation of p53-mediated apoptosis. We have shown previously that colocalization of p53 and DNA-PK to structured single-stranded DNA dramatically enhances the potential for p53 phosphorylation by DNA-PK. We report here the identification of p53 phosphorylation at two novel sites for DNA-PK, Thr18 and Ser9. Colocalization of p53 and DNA-PK on structured DNA was required for efficient phosphorylation of p53 at multiple sites, while specific recognition of Ser9 and Thr18 appeared to be dependent upon additional determinants of p53 beyond the N-terminal 65 amino acids. Our results suggest a role for DNA-PK in the modulation of p53 activity resultant from the convergence of p53 and DNA-PK on structured DNA.

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结构DNA通过DNA依赖性蛋白激酶在丝氨酸9和苏氨酸18处促进p53的磷酸化。
p53 n端多个位点的磷酸化促进其与hdm2/mdm2的分离,并刺激其转录调控潜力。大磷酸肌肽3-激酶样激酶共济失调毛细血管扩张突变基因产物和共济失调毛细血管扩张和rad -3相关激酶促进人类p53在Ser15和Ser20的磷酸化,并且是DNA损伤后p53激活所必需的。dna依赖性蛋白激酶(DNA-PK)是另一种大型磷酸肌肽3-激酶样激酶,具有磷酸化p53的Ser15位点的潜力,并且已被提出在体内增强这些位点的磷酸化。此外,最近的研究支持DNA-PK在p53介导的细胞凋亡调控中的作用。我们之前已经证明,p53和DNA- pk与结构单链DNA的共定位显著增强了DNA- pk对p53磷酸化的潜力。我们在这里报告了p53在DNA-PK, Thr18和Ser9的两个新位点磷酸化的鉴定。p53和DNA- pk在结构化DNA上的共定位是p53在多个位点有效磷酸化所必需的,而Ser9和Thr18的特异性识别似乎依赖于n端65个氨基酸以外的p53决定因素。我们的研究结果表明,DNA- pk在p53和DNA- pk在结构化DNA上的收敛导致的p53活性的调节中起作用。
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