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首页> 外文期刊>Nucleic acids research >Molecular interactions of ASPP1 and ASPP2 with the p53 protein family and the apoptotic promoters PUMA and Bax
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Molecular interactions of ASPP1 and ASPP2 with the p53 protein family and the apoptotic promoters PUMA and Bax

机译:ASPP1和ASPP​​2与p53蛋白家族以及凋亡启动子PUMA和Bax的分子相互作用

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The apoptosis stimulating p53 proteins, ASPP1 and ASPP2, are the first two common activators of the p53 protein family that selectively enable the latter to regulate specific apoptotic target genes, which facilitates yes yet unknown mechanisms for discrimination between cell cycle arrest and apoptosis. To better understand the interplay between ASPP- and p53-family of proteins we investigated the molecular interactions between them using biochemical methods and structure-based homology modelling. The data demonstrate that: (i) the binding of ASPP1 and ASPP2 to p53, p63 and p73 is direct; (ii) the C-termini of ASPP1 and ASPP2 interact with the DNA-binding domains of p53 protein family with dissociation constants, Kd, in the lower micro-molar range; (iii) the stoichiometry of binding is 1:1; (iv) the DNA-binding domains of p53 family members are sufficient for these protein–protein interactions; (v) EMSA titrations revealed that while tri-complex formation between ASPPs, p53 family of proteins and PUMA/Bax is mutually exclusive, ASPP2 (but not ASPP1) formed a complex with PUMA (but not Bax) and displaced p53 and p73. The structure-based homology modelling revealed subtle differences between ASPP2 and ASPP1 and together with the experimental data provide novel mechanistic insights.
机译:刺激细胞凋亡的p53蛋白ASPP1和ASPP​​2是p53蛋白家族的前两个常见激活因子,可以选择性地使后者调节特定的凋亡靶基因,从而促进了尚不清楚的细胞周期停滞与凋亡之间的区别机制。为了更好地了解ASPP蛋白和p53蛋白家族之间的相互作用,我们使用生化方法和基于结构的同源性建模研究了它们之间的分子相互作用。数据表明:(i)ASPP1和ASPP​​2与p53,p63和p73的结合是直接的; (ii)ASPP1和ASPP​​2的C末端在较低的微摩尔范围内以解离常数K d 与p53蛋白家族的DNA结合域相互作用。 (iii)结合的化学计量为1:1; (iv)p53家族成员的DNA结合结构域足以实现这些蛋白质之间的相互作用; (v)EMSA滴定表明,虽然ASPPs,p53蛋白家族与PUMA / Bax之间形成三复合物是互斥的,但ASPP2(但不是ASPP1)却与PUMA(但不是Bax)形成了复合物并取代了p53和p73。基于结构的同源性建模揭示了ASPP2和ASPP​​1之间的细微差别,并与实验数据一起提供了新颖的机理见解。

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