首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Structural studies of p21Waf1/Cip1/Sdi1 in the free and Cdk2-bound state: conformational disorder mediates binding diversity.
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Structural studies of p21Waf1/Cip1/Sdi1 in the free and Cdk2-bound state: conformational disorder mediates binding diversity.

机译:游离和Cdk2结合状态下p21Waf1 / Cip1 / Sdi1的结构研究:构象障碍介导结合多样性。

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摘要

The cyclin-dependent kinase (Cdk) inhibitor p21Waf1/Cip1/Sdi1, important for p53-dependent cell cycle control, mediates G1/S arrest through inhibition of Cdks and possibly through inhibition of DNA replication. Cdk inhibition requires a sequence of approximately 60 amino acids within the p21 NH2 terminus. We show, using proteolytic mapping, circular dichroism spectropolarimetry, and nuclear magnetic resonance spectroscopy, that p21 and NH2-terminal fragments that are active as Cdk inhibitors lack stable secondary or tertiary structure in the free solution state. In sharp contrast to the disordered free state, however, the p21 NH2 terminus adopts an ordered stable conformation when bound to Cdk2, as shown directly by NMR spectroscopy. We have, thus, identified a striking disorder-order transition for p21 upon binding to one of its biological targets, Cdk2. This structural transition has profound implications in light of the ability of p21 to bind and inhibit a diverse family of cyclin-Cdk complexes, including cyclin A-Cdk2, cyclin E-Cdk2, and cyclin D-Cdk4. Our findings suggest that the flexibility, or disorder, of free p21 is associated with binding diversity and offer insights into the role for structural disorder in mediating binding specificity in biological systems. Further, these observations challenge the generally accepted view of proteins that stable secondary and tertiary structure are prerequisites for biological activity and suggest that a broader view of protein structure should be considered in the context of structure-activity relationships.
机译:细胞周期蛋白依赖性激酶(Cdk)抑制剂p21Waf1 / Cip1 / Sdi1对p53依赖性细胞周期控制很重要,它通过抑制Cdks并可能通过抑制DNA复制来介导G1 / S阻滞。 Cdk抑制需要p21 NH2末端内约60个氨基酸的序列。我们显示,使用蛋白水解作图,圆二色性光谱法和核磁共振光谱法,作为Cdk抑制剂有活性的p21和NH2末端片段在自由溶液状态下缺乏稳定的二级或三级结构。与无序游离态形成鲜明对比的是,p21 NH2末端与Cdk2结合时采用有序的稳定构象,如NMR光谱法直接显示的那样。因此,我们已经确定了p21与其生物学靶标之一Cdk2结合后的显着紊乱顺序过渡。鉴于p21结合并抑制多种细胞周期蛋白-Cdk复合物家族的能力(包括细胞周期蛋白A-Cdk2,细胞周期蛋白E-Cdk2和细胞周期蛋白D-Cdk4),这种结构转变具有深远的意义。我们的发现表明,游离p21的柔性或紊乱与结合多样性相关,并为结构性紊乱在介导生物系统中的结合特异性中的作用提供了见识。此外,这些观察结果挑战了蛋白质的普遍接受观点,即稳定的二级和三级结构是生物活性的前提,并建议应在结构-活性关系的背景下考虑蛋白质结构的广阔视野。

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