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Mdm2中央结构域中的第二个p53结合位点对于p53泛素化至关重要。

A second p53 binding site in the central domain of Mdm2 is essential for p53 ubiquitination.

作者信息

Ma Jianhong, Martin John D, Zhang Hong, Auger Kurt R, Ho Thau F, Kirkpatrick Robert B, Grooms Michael H, Johanson Kyung O, Tummino Peter J, Copeland Robert A, Lai Zhihong

机构信息

Enzymology & Mechanistic Pharmacology, GlaxoSmithKline, 1250 South Collegeville Road, Collegeville, Pennsylvania 19426, USA.

出版信息

Biochemistry. 2006 Aug 1;45(30):9238-45. doi: 10.1021/bi060661u.

Abstract

Mdm2 negatively regulates p53 by inhibiting its transcriptional activity and promoting its degradation by functioning as an E3 ubiquitin ligase. The primary p53 binding site on mdm2 is located in its N-terminal domain. Through binding to p53 at its N-terminal transactivation domain, mdm2 directly blocks the transcriptional activation function of p53. We discovered that truncated mdm2 protein constructs without the N-terminal p53 binding domain are at least as active as full-length mdm2 in catalyzing p53 ubiquitination. Furthermore, the deletion of the central acidic domain significantly reduces the E3 ligase activity of mdm2 toward p53. We have also performed GST pull-down experiments to probe the direct binding of various mdm2 domain constructs toward full length p53 and found that mdm2 constructs without the N-terminal p53 binding domain retain the ability to bind to p53. Our kinetic and binding data localize the second p53 binding site between amino acids 211 and 361, including the acidic domain and the zinc finger region. Our work, consistent with other reports, suggests that the p53 tetramer interacts with at least two sites on mdm2. Although the interaction between the N-termini of mdm2 and p53 blocks the transactivation activity of p53, the interaction between the central domain of mdm2 and the core domain of p53 is critical for the ubiquitination and degradation of p53. This second mdm2-p53 interaction site represents an alternative target for small molecule modulators of the mdm2-p53 pathway.

摘要

Mdm2 通过抑制 p53 的转录活性并作为 E3 泛素连接酶促进其降解来负向调节 p53。Mdm2 上主要的 p53 结合位点位于其 N 端结构域。通过在其 N 端反式激活结构域与 p53 结合,Mdm2 直接阻断 p53 的转录激活功能。我们发现,没有 N 端 p53 结合结构域的截短型 Mdm2 蛋白构建体在催化 p53 泛素化方面至少与全长 Mdm2 一样活跃。此外,中央酸性结构域的缺失显著降低了 Mdm2 对 p53 的 E3 连接酶活性。我们还进行了 GST 下拉实验,以探究各种 Mdm2 结构域构建体与全长 p53 的直接结合,发现没有 N 端 p53 结合结构域的 Mdm2 构建体仍保留与 p53 结合的能力。我们的动力学和结合数据将第二个 p53 结合位点定位在氨基酸 211 至 361 之间,包括酸性结构域和锌指区域。我们的工作与其他报道一致,表明 p53 四聚体与 Mdm2 上的至少两个位点相互作用。虽然 Mdm2 和 p53 的 N 端之间的相互作用阻断了 p53 的反式激活活性,但 Mdm2 的中央结构域与 p53 的核心结构域之间的相互作用对于 p53 的泛素化和降解至关重要。这个第二个 Mdm2 - p53 相互作用位点代表了 Mdm2 - p53 通路小分子调节剂的另一个靶点。

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