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A unique insertion in STARD9's motor domain regulates its stability

机译:STARD9电机域的独特插入可调节其稳定性

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STARD9 is a largely uncharacterized mitotic kinesin and putative cancer target that is critical for regulating pericentriolar material cohesion during bipolar spindle assembly. To begin to understand the mechanisms regulating STARD9 function and their importance to cell division, we took a multidisciplinary approach to define the cis and trans factors that regulate the stability of the STARD9 motor domain. We show that, unlike the other ~50 mammalian kinesins, STARD9 contains an insertion in loop 12 of its motor domain (MD). Working with the STARD9-MD, we show that it is phosphorylated in mitosis by mitotic kinases that include Plk1. These phosphorylation events are important for targeting a pool of STARD9-MD for ubiquitination by the SCFβ-TrCP ubiquitin ligase and proteasome-dependent degradation. Of interest, overexpression of nonphosphorylatableondegradable STARD9-MD mutants leads to spindle assembly defects. Our results with STARD9-MD imply that in vivo the protein levels of full-length STARD9 could be regulated by Plk1 and SCFβ-TrCP to promote proper mitotic spindle assembly.
机译:STARD9在很大程度上是未表征的有丝分裂驱动蛋白和推定的癌症靶标,在双极纺锤体组装过程中,该靶标对于调节中心绒毛周围物质的凝聚力至关重要。为了开始理解调节STARD9功能的机制及其对细胞分裂的重要性,我们采用了多学科方法来定义调节STARD9运动域稳定性的顺式和反式因子。我们发现,与其他〜50种哺乳动物驱动蛋白不同,STARD9在其运动域(MD)的第12个环中包含一个插入。使用STARD9-MD,我们显示它在有丝分裂中被包括Plk1的有丝分裂激酶磷酸化。这些磷酸化事件对于靶向STARD9-MD库以通过SCFβ-TrCP泛素连接酶进行泛素化和蛋白酶体依赖性降解非常重要。有趣的是,不可磷酸化/不可降解的STARD9-MD突变体的过表达导致纺锤体装配缺陷。我们对STARD9-MD的研究结果表明,在体内,全长STARD9的蛋白质水平可以由Plk1和SCFβ-TrCP调节,以促进适当的有丝分裂纺锤体组装。

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