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首页> 外文期刊>Biophysical Journal >P15PAF Is an intrinsically disordered protein with nonrandom structural preferences at sites of interaction with other proteins
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P15PAF Is an intrinsically disordered protein with nonrandom structural preferences at sites of interaction with other proteins

机译:P15PAF是一种内在无序的蛋白质,在与其他蛋白质相互作用的部位具有非随机的结构偏好

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We present to our knowledge the first structural characterization of the proliferating-cell-nuclear-antigen-associated factor p15PAF, showing that it is monomeric and intrinsically disordered in solution but has nonrandom conformational preferences at sites of protein-protein interactions. p15 PAF is a 12 kDa nuclear protein that acts as a regulator of DNA repair during DNA replication. The p15PAF gene is overexpressed in several types of human cancer. The nearly complete NMR backbone assignment of p15PAF allowed us to measure 86 N-HN residual dipolar couplings. Our residual dipolar coupling analysis reveals nonrandom conformational preferences in distinct regions, including the proliferating-cell-nuclear-antigen-interacting protein motif (PIP-box) and the KEN-box (recognized by the ubiquitin ligase that targets p15PAF for degradation). In accordance with these findings, analysis of the 15N R2 relaxation rates shows a relatively reduced mobility for the residues in these regions. The agreement between the experimental small angle x-ray scattering curve of p15PAF and that computed from a statistical coil ensemble corrected for the presence of local secondary structural elements further validates our structural model for p15PAF. The coincidence of these transiently structured regions with protein-protein interaction and posttranslational modification sites suggests a possible role for these structures as molecular recognition elements for p15PAF.
机译:我们向我们展示了增殖细胞核抗原相关因子p15PAF的第一个结构特征,表明它在溶液中是单体性和固有性紊乱的,但在蛋白质-蛋白质相互作用的位点具有非随机构象偏好。 p15 PAF是一种12 kDa的核蛋白,可在DNA复制过程中充当DNA修复的调节剂。 p15PAF基因在几种类型的人类癌症中过表达。 p15PAF的几乎完整的NMR主链分配使我们能够测量86 N-HN残留的偶极耦合。我们的残留偶极偶合分析揭示了在不同区域的非随机构象偏好,包括增殖细胞核抗原相互作用蛋白基序(PIP-box)和KEN-box(被针对p15PAF降解的泛素连接酶所识别)。根据这些发现,对15 N R2弛豫速率的分析表明,这些区域中残基的迁移率相对降低。 p15PAF的实验小角度X射线散射曲线与根据统计线圈整体计算得出的,针对局部二级结构元素的存在进行校正的一致性进一步验证了我们的p15PAF的结构模型。这些具有蛋白质-蛋白质相互作用和翻译后修饰位点的瞬时结构化区域的重合提示了这些结构作为p15PAF的分子识别元件的可能作用。

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