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Structural Insights into the Mechanism of Phosphoregulation of the Retinoblastoma Protein

机译:结构洞察的视网膜母细胞瘤蛋白phosphoregulation机制

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摘要

The retinoblastoma susceptibility protein RB1 is a key regulator of cell proliferation and fate. RB1 operates through nucleating the formation of multi-component protein complexes involved in the regulation of gene transcription, chromatin structure and protein stability. Phosphorylation of RB1 by cyclin-dependent kinases leads to conformational alterations and inactivates the capability of RB1 to bind partner protein. Using small angle X-ray scattering in combination with single particle analysis of transmission electron microscope images of negative-stained material we present the first three-dimensional reconstruction of non-phosphorylated RB1 revealing an extended architecture and deduce the domain arrangement within the molecule. Phosphorylation results in an overt alteration of the molecular shape and dimensions, consistent with the transition to a compact globular architecture. The work presented provides what is to our knowledge the first description of the relative domain arrangement in active RB1 and predicts the molecular movement that leads to RB1 inactivation following protein phosphorylation.
机译:视网膜母细胞瘤敏感性蛋白RB1是细胞增殖和命运的关键调节剂。 RB1通过成核多组分蛋白质复合物的形成而起作用,该复合物涉及基因转录,染色质结构和蛋白质稳定性的调节。细胞周期蛋白依赖性激酶使RB1磷酸化导致构象改变,并使RB1结合伴侣蛋白的能力失活。使用小角度X射线散射结合负离子材料的透射电子显微镜图像的单颗粒分析,我们提出了非磷酸化RB1的第一个三维重构,揭示了扩展的结构并推断了分子内的域排列。磷酸化导致分子形状和尺寸的明显改变,这与向致密球状结构的转变一致。提出的工作为我们所知,是活性RB1中相对域排列的第一个描述,并预测了导致蛋白质磷酸化后RB1失活的分子运动。

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