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Role of tumor suppressor p53 domains in selective binding to supercoiled DNA

机译:抑癌基因p53结构域在超螺旋DNA选择性结合中的作用

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We showed previously that bacterially expressed full-length human wild-type p53b(1-393) binds selectively to supercoiled (sc)DNA in sc/linear DNA competition experiments, a process we termed supercoil-selective (SCS) binding. Using p53 deletion mutants and pBluescript scDNA (lacking the p53 recognition sequence) at native superhelix density we demonstrate here that the p53 C-terminal domain (amino acids 347-382) and a p53 oligomeric state are important for SCS binding. Monomeric p53(361-393) protein (lacking the p53 tetramerization domain, amino acids 325-356) did not exhibit SCS binding while both dimeric mutant p53(319-393)L344A and fusion protein GCN4-p53(347-393) were effective in SCS binding. Supershifting of p53(320-393)-scDNA complexes with monoclonal antibodies revealed that the amino acid region 375-378, constituting the epitope of the Bp53-10.1 antibody, plays a role in binding of the p53(320-393) protein to scDNA. Using electron microscopy we observed p53-scDNA nucleoprotein filaments produced by all the C-terminal proteins that displayed SCS binding in the gel electrophoresis experiments; no filaments formed with the monomeric p53(361-393) protein. We propose a model according to which two DNA duplexes are compacted into p53-scDNA filaments and discuss a role for filament formation in recombination.
机译:我们以前显示了细菌表达的全长人类野生型p53b(1-393)在sc /线性DNA竞争实验中选择性地与超螺旋(sc)DNA结合,我们称此过程为超螺旋选择性(SCS)结合。使用天然超螺旋密度的p53缺失突变体和pBluescript scDNA(缺少p53识别序列),我们在这里证明p53 C末端结构域(氨基酸347-382)和p53寡聚状态对于SCS结合很重要。单体p53(361-393)蛋白(缺少p53四聚结构域,氨基酸325-356)不显示SCS结合,而二聚体突变体p53(319-393)L344A和融合蛋白GCN4-p53(347-393)均有效在SCS绑定中。 p53(320-393)-scDNA复合物与单克隆抗体的超移揭示了构成Bp53-10.1抗体表位的氨基酸区域375-378在p53(320-393)蛋白与scDNA的结合中起作用。使用电子显微镜,我们观察到了由所有C末端蛋白产生的p53-scDNA核蛋白丝,这些蛋白在凝胶电泳实验中显示出SCS结合。没有与单体p53(361-393)蛋白形成细丝。我们提出了一个模型,根据该模型,两个DNA双链体被压缩成p53-scDNA细丝,并讨论了细丝形成在重组中的作用。

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