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D box and KEN box motifs in budding yeast Hsl1p are required for APC-mediated degradation and direct binding to Cdc20p and Cdh1p

机译:APC介导的降解和直接结合到Cdc20p和Cdh1p时需要发芽酵母Hsl1p中的D盒和KEN盒基序

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摘要

The precise order of molecular events during cell cycle progression depends upon ubiquitin-mediated proteolysis of cell cycle regulators. We demonstrated previously that Hsl1p, a protein kinase that inhibits the Swe1p protein kinase in a bud morphogenesis checkpoint, is targeted for ubiquitin-mediated turnover by the anaphase-promoting complex (APC). Here, we investigate regions of Hsl1p that are critical both for binding to the APC machinery and for APC-mediated degradation. We demonstrate that Hsl1p contains both a destruction box (D box) and a KEN box motif that are necessary for Hsl1p turnover with either APCCdc20 or APCCdh1. In coimmunoprecipitation studies, the D box of full-length Hsl1p was critical for association with Cdc20p, whereas the KEN box was important for association with Cdh1p. Fusion of a 206-amino-acid fragment of Hsl1p containing these motifs to a heterologous protein resulted in APC-dependent degradation of the fusion protein that required intact D box and KEN box motifs. Finally, this bacterially expressed Hsl1p fusion protein interacted with Cdc20p and Cdh1p either translated in vitro or expressed in and purified from insect cells. Binding to Cdc20p and Cdh1p was disrupted completely by a D box/KEN box double mutant. These results indicate that D box and KEN box motifs are important for direct binding to the APC machinery, leading to ubiquitination and subsequent protein degradation.
机译:细胞周期进程中分子事件的确切顺序取决于泛素介导的细胞周期调节剂的蛋白水解。我们以前证明了Hsl1p,一种在芽形态发生检查点抑制Swe1p蛋白激酶的蛋白激酶,是后期促进复合物(APC)靶向遍在蛋白介导的周转的。在这里,我们研究了Hsl1p的区域,这些区域对于结合APC机械和APC介导的降解都至关重要。我们证明,Hsl1p包含破坏框(D框)和KEN框图案,这对于使用APC Cdc20 或APC Cdh1 进行Hsl1p转换是必需的。在免疫共沉淀研究中,全长Hsl1p的D框对于与Cdc20p关联至关重要,而KEN框对于与Cdh1p关联很重要。含有这些基序的Hsl1p的206个氨基酸片段与异源蛋白融合,导致融合蛋白APC依赖性降解,需要完整的D盒和KEN盒基序。最后,这种细菌表达的Hsl1p融合蛋白与Cdc20p和Cdh1p相互作用,在体外翻译或在昆虫细胞中表达和纯化。与Cdc20p和Cdh1p的结合被D盒/ KEN盒双突变体完全破坏。这些结果表明,D盒和KEN盒基序对于直接结合APC机械非常重要,从而导致泛素化和随后的蛋白质降解。

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