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Structures of APC/C-CDH1 with substrates identify Cdh1 and Apc10 as the D-box co-receptor

机译:具有底物的APC / C-CDH1的结构将Cdh1和Apc10识别为D-box协同受体

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摘要

The ubiquitylation of cell-cycle regulatory proteins by the large multimeric anaphase-promoting complex (APC/C) controls sister chromatid segregation and the exit from mitosis. Selection of APC/C targets is achieved through recognition of destruction motifs, predominantly the destruction (D)-box and KEN (Lys-Glu-Asn)-box. Although this process is known to involve a co-activator protein (either Cdc20 or Cdh1) together with core APC/C subunits the structural basis for substrate recognition and ubiquitylation is not understood. Here we investigate budding yeast APC/C using single-particle electron microscopy and determine a cryo-electron microscopy map of APC/C in complex with the Cdh1 co-activator protein (APC/CCdh1) bound to a D-box peptide at ~10 Å resolution. We find that a combined catalytic and substrate-recognition module is located within the central cavity of the APC/C assembled from Cdh1, Apc10—a core APC/C subunit previously implicated in substrate recognition and the cullin domain of Apc2. Cdh1 and Apc10, identified from difference maps, create a co-receptor for the D-box following repositioning of Cdh1 towards Apc10. Using NMR spectroscopy we demonstrate specific D-box–Apc10 interactions, consistent with a role for Apc10 in directly contributing towards D-box recognition by the APC/CCdh1 complex. Our results rationalize the contribution of both co-activator and core APC/C subunits to D-box recognition and provide a structural framework for understanding mechanisms of substrate recognition and catalysis by the APC/C.
机译:大型多聚体后期促进复合物(APC / C)对细胞周期调节蛋白的泛素化控制了姐妹染色单体的分离和有丝分裂的退出。通过识别破坏基序,主要是破坏(D)框和KEN(Lys-Glu-Asn)框,可以选择APC / C目标。尽管已知该过程涉及共激活蛋白(Cdc20或Cdh1)以及核心APC / C亚基,但尚不了解底物识别和泛素化的结构基础。在这里,我们使用单粒子电子显微镜研究发芽的酵母APC / C,并确定APC / C与Cdh1辅助激活蛋白(APC / CCdh1)结合在约10的D-box肽中的冷冻电子显微镜图Å分辨率。我们发现,组合的催化和底物识别模块位于由Cdh1,Apc10组装而成的APC / C的中央腔内,Cdh1,Apc10是先前参与底物识别和Apc2的cullin域的核心APC / C亚基。从差异图识别的Cdh1和Apc10,在将Cdh1重新定位到Apc10之后,为D-box创建了一个共受体。使用NMR光谱,我们证明了特定的D-box-Apc10相互作用,与Apc10在直接促进APC / CCdh1复合物识别D-box的作用中的作用一致。我们的研究结果合理化了共激活剂和核心APC / C亚基对D-box识别的贡献,并为理解APC / C对底物识别和催化机理提供了结构框架。

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