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四种p53 DNA结合结构域肽与天然p53反应元件结合并使DNA弯曲。

Four p53 DNA-binding domain peptides bind natural p53-response elements and bend the DNA.

作者信息

Balagurumoorthy P, Sakamoto H, Lewis M S, Zambrano N, Clore G M, Gronenborn A M, Appella E, Harrington R E

机构信息

Department of Biochemistry, University of Nevada Reno 89557-0014, USA.

出版信息

Proc Natl Acad Sci U S A. 1995 Sep 12;92(19):8591-5. doi: 10.1073/pnas.92.19.8591.

Abstract

Recent structural studies of the minimal core DNA-binding domain of p53 (p53DBD) complexed to a single consensus pentamer sequence and of the isolated p53 tetramerization domain have provided valuable insights into their functions, but many questions about their interacting roles and synergism remain unanswered. To better understand these relationships, we have examined the binding of the p53DBD to two biologically important full-response elements (the WAF1 and ribosomal gene cluster sites) by using DNA circularization and analytical ultracentrifugation. We show that the p53DBD binds DNA strongly and cooperatively with p53DBD to DNA binding stoichiometries of 4:1. For the WAF1 element, the mean apparent Kd is (8.3 +/- 1.4) x 10(-8) M, and no intermediate species of lower stoichiometries can be detected. We show further that complex formation induces an axial bend of at least 60 degrees in both response elements. These results, taken collectively, demonstrate that p53DBD possesses the ability to direct the formation of a tight nucleoprotein complex having the same 4:1 DNA-binding stoichiometry as wild-type p53 which is accompanied by a substantial conformational change in the response-element DNA. This suggests that the p53DBD may play a role in the tetramerization function of p53. A possible role in this regard is proposed.

摘要

近期对与单个共有五聚体序列复合的p53最小核心DNA结合结构域(p53DBD)以及分离出的p53四聚化结构域的结构研究,为其功能提供了有价值的见解,但关于它们的相互作用作用和协同作用的许多问题仍未得到解答。为了更好地理解这些关系,我们通过使用DNA环化和分析超速离心研究了p53DBD与两个生物学上重要的全反应元件(WAF1和核糖体基因簇位点)的结合。我们表明,p53DBD与DNA强烈且协同结合,p53DBD与DNA的结合化学计量比为4:1。对于WAF1元件,平均表观Kd为(8.3±1.4)×10⁻⁸ M,且未检测到化学计量比更低的中间物种。我们进一步表明,复合物的形成在两个反应元件中均诱导至少60度的轴向弯曲。综合这些结果表明,p53DBD具有指导形成紧密核蛋白复合物的能力,该复合物具有与野生型p53相同的4:1 DNA结合化学计量比,同时反应元件DNA发生了显著的构象变化。这表明p53DBD可能在p53的四聚化功能中发挥作用。本文提出了这方面的一个可能作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/314d/41012/6cf5686e75dc/pnas01497-0070-a.jpg

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