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首页> 外文期刊>Oncogene >Molecular basis of S100 proteins interacting with the p53 homologs p63 and p73
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Molecular basis of S100 proteins interacting with the p53 homologs p63 and p73

机译:S100蛋白与p53同源物p63和p73相互作用的分子基础

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摘要

S100 proteins modulate p53 activity by interacting with its tetramerization (p53TET, residues 325–355) and transactivation (residues 1–57) domains. In this study, we characterized biophysically the binding of S100A1, S100A2, S100A4, S100A6 and S100B to homologous domains of p63 and p73 in vitro by fluorescence anisotropy, analytical ultracentrifugation and analytical gel filtration. We found that S100A1, S100A2, S100A4, S100A6 and S100B proteins bound different p63 and p73 tetramerization domain variants and naturally occurring isoforms with varying affinities in a calcium-dependent manner. Additional interactions were observed with peptides derived from the p63 and p73 N-terminal transactivation domains. Importantly, S100 proteins bound p63 and p73 with different affinities in their different oligomeric states, similarly to the differential modes of binding to p53. On the basis of our data, we hypothesize that S100 proteins regulate the oligomerization state of all three p53 family members and their isoforms, with a potential physiological relevance in developmental and disease-related processes. The regulation of the p53 family by S100 is complicated and depends on the target preference of each individual S100 protein, the concentration of the proteins and calcium, as well as the splicing variation of p63 or p73. Our results outlining the complexity of the interaction should be considered when studying the functional effects of S100 proteins in their biological context.
机译:S100蛋白通过与其四聚化(p53TET,残基325–355)和反式激活(残基1–57)域相互作用来调节p53的活性。在这项研究中,我们通过荧光各向异性,分析超速离心和分析凝胶过滤,从生物学上表征了S100A1,S100A2,S100A4,S100A6和S100B与p63和p73同源域的结合。我们发现,S100A1,S100A2,S100A4,S100A6和S100B蛋白以钙依赖的方式结合不同的p63和p73四聚结构域变体以及具有不同亲和力的天然存在的同工型。观察到与衍生自p63和p73 N末端反式激活域的肽的其他相互作用。重要的是,S100蛋白以不同的低聚状态以不同的亲和力结合p63和p73,类似于与p53结合的不同模式。根据我们的数据,我们假设S100蛋白调节所有三个p53家族成员及其同工型的寡聚状态,在发育和疾病相关过程中具有潜在的生理相关性。 S100对p53家族的调控非常复杂,并且取决于每个S100蛋白的目标偏好,蛋白和钙的浓度以及p63或p73的剪接变异。在研究S100蛋白在生物学环境中的功能作用时,应考虑概述相互作用复杂性的结果。

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