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与E2F1-DP1结合的Rb C末端结构域的结构:磷酸化诱导E2F释放的机制。

Structure of the Rb C-terminal domain bound to E2F1-DP1: a mechanism for phosphorylation-induced E2F release.

作者信息

Rubin Seth M, Gall Anne-Laure, Zheng Ning, Pavletich Nikola P

机构信息

Structural Biology Program and Howard Hughes Medical Institute, Memorial Sloan-Kettering Cancer Center, NY 10021, USA.

出版信息

Cell. 2005 Dec 16;123(6):1093-106. doi: 10.1016/j.cell.2005.09.044.

Abstract

The retinoblastoma (Rb) protein negatively regulates the G1-S transition by binding to the E2F transcription factors, until cyclin-dependent kinases phosphorylate Rb, causing E2F release. The Rb pocket domain is necessary for E2F binding, but the Rb C-terminal domain (RbC) is also required for growth suppression. Here we demonstrate a high-affinity interaction between RbC and E2F-DP heterodimers shared by all Rb and E2F family members. The crystal structure of an RbC-E2F1-DP1 complex reveals an intertwined heterodimer in which the marked box domains of both E2F1 and DP1 contact RbC. We also demonstrate that phosphorylation of RbC at serines 788 and 795 destabilizes one set of RbC-E2F-DP interactions directly, while phosphorylation at threonines 821 and 826 induces an intramolecular interaction between RbC and the Rb pocket that destabilizes the remaining interactions indirectly. Our findings explain the requirement of RbC for high-affinity E2F binding and growth suppression and establish a mechanism for the regulation of Rb-E2F association by phosphorylation.

摘要

视网膜母细胞瘤(Rb)蛋白通过与E2F转录因子结合来负向调节G1-S期转换,直到细胞周期蛋白依赖性激酶使Rb磷酸化,导致E2F释放。Rb口袋结构域对于E2F结合是必需的,但Rb C末端结构域(RbC)对于生长抑制也是必需的。在这里,我们展示了RbC与所有Rb和E2F家族成员共有的E2F-DP异二聚体之间的高亲和力相互作用。RbC-E2F1-DP1复合物的晶体结构揭示了一种相互缠绕的异二聚体,其中E2F1和DP1的标记框结构域均与RbC接触。我们还证明,丝氨酸788和795处的RbC磷酸化直接破坏了一组RbC-E2F-DP相互作用的稳定性,而苏氨酸821和826处的磷酸化则诱导了RbC与Rb口袋之间的分子内相互作用,从而间接破坏了其余相互作用的稳定性。我们的研究结果解释了RbC对高亲和力E2F结合和生长抑制的需求,并建立了一种通过磷酸化调节Rb-E2F结合的机制。

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