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HECTD1 controls the protein level of IQGAP1 to regulate the dynamics of adhesive structures

机译:HECTD1控制IQGAP1的蛋白质水平以调节粘着结构的动力学

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Background Cell migration including collective cell movement and individual cell migration are crucial factors in embryogenesis. During the spreading/migration of cells, several types of adhesive structures physically interacting with the extracellular matrix (ECM) or with another cell have been described and the formation and maturation of adhesion structures are coordinated, however the molecular pathways involved are still not fully understood. Results We generated a mouse embryonic fibroblast line (MEF) from homozygous mutant ( Hectd1 R/R , Hectd1 Gt(RRC200) ) mouse of the E3 ubiquitin ligase for inhibin B receptor ( Hectd1 ). Detailed examination of cell motion on MEF cells demonstrated that loss of Hectd1 resulted in accelerated cell spreading and migration but impaired directionality of migration. In Hectd1 R/R cells paxillin and zyxin were largely mis-localized, whereas their expression levels were unchanged. In addition the formation of focal adhesions (FAs) was impaired and the focal complexes (FXs) were increased. We further identified HECTD1 as a key regulator of IQGAP1. IQGAP1 co-localized together with HECTD1 in the leading edge of cells. HECTD1 interacted with IQGAP1 and regulated its degradation through ubiquitination. Over-expression of IQGAP1 in control MEF phenocopied the spreading and migration defects of Hectd1 R/R cells. In contrast, siRNA-mediated knockdown of IQGAP1 rescued the defects in cellular movement of Hectd1 R/R cells. Conclusions The E3 ligase activity of Hectd1 regulates the protein level of IQGAP1 through ubiquitination and therefore mediates the dynamics of FXs including the recruitment of paxillin and actinin. IQGAP1 is one of the effectors of HECTD1.
机译:背景细胞迁移包括集体细胞移动和单个细胞迁移是胚胎发生的关键因素。在细胞的扩散/迁移过程中,已描述了几种与细胞外基质(ECM)或与另一种细胞发生物理相互作用的粘附结构,并协调了粘附结构的形成和成熟,但是所涉及的分子途径仍未完全理解。结果我们从E3泛素连接酶抑制素B受体的纯合突变体(Hectd1 R / R ,Hectd1 Gt(RRC200))小鼠中产生了小鼠胚胎成纤维细胞系(MEF)。 (Hectd1)。在MEF细胞上对细胞运动的详细检查表明,Hectd1的缺失导致细胞扩散和迁移加速,但迁移的方向性受损。在Hectd1 R / R 细胞中,paxillin和zyxin在很大程度上错位,而它们的表达水平没有变化。另外,粘着斑(FAs)的形成受到损害,并且粘着复合物(FXs)增加。我们进一步确定HECTD1是IQGAP1的关键调节因子。 IQGAP1与HECTD1共同定位在细胞的前沿。 HECTD1与IQGAP1相互作用,并通过泛素化调节其降解。 IQGAP1在对照MEF中的过表达明显改变了Hectd1 R / R 细胞的扩散和迁移缺陷。相反,siRNA介导的IQGAP1的敲除挽救了Hectd1 R / R 细胞的细胞运动缺陷。结论Hectd1的E3连接酶活性通过泛素化调节IQGAP1的蛋白水平,从而介导FX的动力学,包括招募Paxillin和actinin。 IQGAP1是HECTD1的效应子之一。

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