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Crystal structure of Lamellipodin implicates diverse functions in actin polymerization and Ras signaling

机译:Lamellipodin的晶体结构在肌动蛋白聚合和Ras信号传导中涉及多种功能

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The adapter protein Lamellipodin (Lpd) plays an important role in cell migration. In particular, Lpd mediates lamellipodia formation by regulating actin dynamics via interacting with Ena/VASP proteins. Its RA-PH tandem domain configuration suggests that like its paralog RIAM, Lpd may also mediate particular Ras GTPase signaling. We determined the crystal structures of the Lpd RA-PH domains alone and with an N-terminal coiled-coil region (cc-RA-PH). These structures reveal that apart from the anticipated coiled-coil interaction, Lpd may also oligomerize through a second intermolecular contact site. We then validated both oligomerization interfaces in solution by mutagenesis. A fluorescence-polarization study demonstrated that Lpd binds phosphoinositol with low affinity. Based on our crystallographic and biochemical data, we propose that Lpd and RIAM serve diverse functions: Lpd plays a predominant role in regulating actin polymerization, and its function in mediating Ras GTPase signaling is largely suppressed compared to RIAM.
机译:衔接蛋白Lamellipodin(Lpd)在细胞迁移中起重要作用。尤其是,Lpd通过与Ena / VASP蛋白相互作用调节肌动蛋白动力学来介导片状脂蛋白形成。其RA-PH串联结构域配置表明,Lpd与其旁系同源RIAM一样,也可能介导特定的Ras GTPase信号传导。我们确定了单独的Lpd RA-PH结构域和N末端卷曲螺旋区域(cc-RA-PH)的晶体结构。这些结构表明,除了预期的盘绕线圈相互作用外,Lpd还可能通过第二个分子间接触位点低聚。然后,我们通过诱变验证了溶液中的两个低聚界面。荧光偏振研究表明,Lpd以低亲和力结合磷酸肌醇。根据我们的晶体学和生化数据,我们建议Lpd和RIAM具有多种功能:Lpd在调节肌动蛋白聚合中起主要作用,与RIAM相比,Lpd在介导Ras GTPase信号传导中的功能受到很大抑制。

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