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p53反式激活结构域内的两个不同基序与p300的Taz2结构域结合,并受到磷酸化的不同影响。

Two distinct motifs within the p53 transactivation domain bind to the Taz2 domain of p300 and are differentially affected by phosphorylation.

作者信息

Jenkins Lisa M Miller, Yamaguchi Hiroshi, Hayashi Ryo, Cherry Scott, Tropea Joseph E, Miller Maria, Wlodawer Alexander, Appella Ettore, Mazur Sharlyn J

机构信息

Laboratory of Cell Biology, National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892, USA.

出版信息

Biochemistry. 2009 Feb 17;48(6):1244-55. doi: 10.1021/bi801716h.

Abstract

The tumor suppressor p53 functions as a transcriptional activator for many genes, including several key genes involved in cell cycle arrest and apoptosis. Following DNA damage-induced stress, p53 undergoes extensive posttranslational modification, resulting in increased stability and activity. Two critical cofactors for p53-mediated transactivation are the histone acetyltransferase paralogues CREB-binding protein (CBP) and p300. The N-terminal transactivation domain of p53 interacts with several domains of CBP/p300, including the Taz2 domain. Here, we report the effects of specific p53 phosphorylations on its interaction with the Taz2 domain of p300. Using a competitive fluorescence anisotropy assay, we determined that monophosphorylation of p53 at Ser(15) or Thr(18) increased the affinity of p53(1-39) for Taz2, and diphosphorylations at Ser(15) and Ser(37) or Thr(18) and Ser(20) further increased the affinity. In addition, we identified a second binding site for Taz2 within p53 residues 35-59. This second site bound Taz2 with a similar affinity as the first site, but the binding was unaffected by phosphorylation. Thus, p53 posttranslational modification modulates only one of the two binding sites for p300 Taz2. Further investigation of Taz2 binding to p53(1-39) or p53(35-59) by isothermal titration calorimetry indicated that upon complex formation, the change in heat capacity at constant pressure, DeltaC(p), was negative for both sites, suggesting the importance of hydrophobic interactions. However, the more negative value of DeltaC(p) for Taz2 binding to the first (-330 cal/(mol.K)) compared to the second site (-234 cal/(mol.K)) suggests that the importance of nonpolar and polar interactions differs between the two sites.

摘要

肿瘤抑制因子p53作为许多基因的转录激活因子发挥作用,这些基因包括几个参与细胞周期阻滞和凋亡的关键基因。在DNA损伤诱导的应激反应后,p53经历广泛的翻译后修饰,导致稳定性和活性增加。p53介导的反式激活的两个关键辅因子是组蛋白乙酰转移酶旁系同源物CREB结合蛋白(CBP)和p300。p53的N端反式激活结构域与CBP/p300的几个结构域相互作用,包括Taz2结构域。在此,我们报告了特定p53磷酸化对其与p300的Taz2结构域相互作用的影响。使用竞争性荧光各向异性分析,我们确定p53在Ser(15)或Thr(18)处的单磷酸化增加了p53(1-39)对Taz2的亲和力,而在Ser(15)和Ser(37)或Thr(18)和Ser(20)处的双磷酸化进一步增加了亲和力。此外,我们在p53的35-59位残基内确定了Taz2的第二个结合位点。这个第二个位点与Taz2的结合亲和力与第一个位点相似,但结合不受磷酸化影响。因此,p53的翻译后修饰仅调节p300 Taz2的两个结合位点之一。通过等温滴定量热法对Taz2与p53(1-39)或p53(35-59)的结合进行的进一步研究表明,在形成复合物时,两个位点的恒压热容变化ΔC(p)均为负值,这表明疏水相互作用的重要性。然而,与第二个位点(-234 cal/(mol·K))相比,Taz2与第一个位点结合时ΔC(p)的负值更大(-330 cal/(mol·K)),这表明两个位点之间非极性和极性相互作用的重要性不同。

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