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Four domains of p300 each bind tightly to a sequence spanning both transactivation subdomains of p53

机译:p300的四个结构域分别与跨越p53的两个反式激活子域的序列紧密结合

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摘要

The transcriptional coactivator p300 binds to and mediates the transcriptional functions of the tetrameric tumor suppressor p53. Both proteins consist of independently folded domains linked by intrinsically disordered sequences. A well studied short sequence of the p53 transactivation domain, p53(15–29), binds weakly to four folded domains of p300 [Taz1/cysteine–histidine-rich region 1 (CH1), Kix, Taz2/CH3, IBiD], with dissociation constants (KD) in the 100 μM region. However, we found that a longer N-terminal transactivation domain construct p53(1–57) bound tightly to each p300 domain. Taz2/CH3 had the greatest affinity (KD = 27 nM) and competes with the N-terminal domain of Mdm2 for the p53 N terminus. p300 thus can protect the N terminus of p53 against the binding of other proteins. Mutations of p53 that abrogate transactivation (L22Q/W23S, W53Q/F54S) greatly weakened binding to each p300 domain, linking phenotypic defects to weakened coactivator binding. We propose a complex between tetrameric p53 and p300 in which four domains of p300 wrap around the four transactivation domains of p53.
机译:转录共激活因子p300结合并介导四聚体肿瘤抑制因子p53的转录功能。两种蛋白质均由通过内部无序序列连接的独立折叠的域组成。一个经过充分研究的p53反式激活结构域短序列p53(15-29)与p300的四个折叠结构域[Taz1 /半胱氨酸-组氨酸富集区1(​​CH1),Kix,Taz2 / CH3,IBiD]弱结合,具有100μM区域的解离常数(KD)。但是,我们发现更长的N末端反式激活结构域构建体p53(1-57)与每个p300结构域紧密结合。 Taz2 / CH3具有最大的亲和力(KD = 27 nM),并且与Mdm2的N末端结构域竞争p53 N末端。因此,p300可以保护p53的N端免受其他蛋白质的结合。消除反式激活的p53突变(L22Q / W23S,W53Q / F54S)极大地削弱了与每个p300结构域的结合,从而将表型缺陷与弱化的共激活因子结合起来。我们提出了四聚体p53和p300之间的复合物,其中p300的四个结构域环绕着p53的四个反式激活结构域。

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