Department of Pharmacology, University of Texas Southwestern Medical Center, Dallas, TX 75390, USA.
Proc Natl Acad Sci U S A. 2012 Nov 6;109(45):18419-24. doi: 10.1073/pnas.1213438109. Epub 2012 Oct 22.
The anaphase-promoting complex/cyclosome (APC/C) promotes anaphase onset and mitotic exit through ubiquitinating securin and cyclin B1. The mitotic APC/C activator, the cell division cycle 20 (Cdc20) protein, directly interacts with APC/C degrons--the destruction (D) and KEN boxes. APC/C(Cdc20) is the target of the spindle checkpoint. Checkpoint inhibition of APC/C(Cdc20) requires the binding of a BubR1 KEN box to Cdc20. How APC/C recognizes substrates is not understood. We report the crystal structures of human Cdc20 alone or bound to a BubR1 KEN box. Cdc20 has a disordered N-terminal region and a C-terminal WD40 β propeller with a preformed KEN-box-binding site at its top face. We identify a second conserved surface at the side of the Cdc20 β propeller as a D-box-binding site. The D box of securin, but not its KEN box, is critical for securin ubiquitination by APC/C(Cdc20). Although both motifs contribute to securin ubiquitination by APC/C(Cdh1), securin mutants lacking either motif are efficiently ubiquitinated. Furthermore, D-box peptides diminish the ubiquitination of KEN-box substrates by APC/C(Cdh1), suggesting possible competition between the two motifs. Our results indicate the lack of strong positive cooperativity between the two degrons of securin. We propose that low-cooperativity, multisite target recognition enables APC/C to robustly ubiquitinate diverse substrates and helps to drive cell cycle oscillations.
后期促进复合物/周期蛋白体 (APC/C) 通过泛素化 securin 和 cyclin B1 来促进后期起始和有丝分裂退出。有丝分裂 APC/C 激活剂细胞分裂周期蛋白 20(Cdc20)蛋白直接与 APC/C 降解部位——破坏(D)和 KEN 盒相互作用。APC/C(Cdc20) 是纺锤体检查点的靶标。APC/C(Cdc20) 的检查点抑制需要 BubR1 KEN 盒与 Cdc20 的结合。APC/C 如何识别底物尚不清楚。我们报告了单独的人 Cdc20 或与人 Cdc20 结合的 BubR1 KEN 盒的晶体结构。Cdc20 具有无规卷曲的 N 端区域和 C 端 WD40β 类 propeller,其顶部具有预先形成的 KEN 盒结合位点。我们在 Cdc20β类 propeller 的侧面确定了第二个保守表面作为 D 盒结合位点。securin 的 D 盒,但不是 KEN 盒,对 APC/C(Cdc20) 介导的 securin 泛素化至关重要。尽管这两个基序都有助于 APC/C(Cdh1)介导的 securin 泛素化,但缺乏这两个基序的 securin 突变体仍能有效地被泛素化。此外,D 盒肽减少了 APC/C(Cdh1)对 KEN 盒底物的泛素化,这表明这两个基序之间可能存在竞争。我们的结果表明 securin 的两个降解部位之间缺乏强正协同性。我们提出,低协同性、多部位靶标识别使 APC/C 能够有效地泛素化多种底物,并有助于驱动细胞周期振荡。