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The neuron-specific formin Delphilin nucleates nonmuscle actin but does not enhance elongation

机译:神经元特异性蛋白蛋白霉菌核酸非用途actin但不增强伸长率

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The formin Delphilin binds the glutamate receptor, GluR delta 2, in dendritic spines of Purkinje cells. Both proteins play a role in learning. To understand how Delphilin functions in neurons, we studied the actin assembly properties of this formin. Formins have a conserved formin homology 2 domain, which nucleates and associates with the fast-growing end of actin filaments, influencing filament growth together with the formin homology 1 (FH1) domain. The strength of nucleation and elongation varies widely across formins. Additionally, most formins have conserved domains that regulate actin assembly through an intramolecular interaction. Delphilin is distinct from other formins in several ways: its expression is limited to Purkinje cells, it lacks classical autoinhibitory domains, and its FH1 domain has minimal proline-rich sequence. We found that Delphilin is an actin nucleator that does not accelerate elongation, although it binds to the barbed end of filaments. In addition, Delphilin exhibits a preference for actin isoforms, nucleating nonmuscle actin but not muscle actin, which has not been described or systematically studied in other formins. Finally, Delphilin is the first formin studied that is not regulated by intramolecular interactions. We speculate how the activity we observe is consistent with its localization in the small dendritic spines.
机译:甲醛蛋白蛋白蛋白结合谷氨酸细胞的树突刺的谷氨酸受体Glur Delta 2。两种蛋白质都在学习中发挥作用。要了解脱蛋白在神经元中的功能如何,我们研究了这种素蛋白的肌动蛋白组装性能。 Formins具有保守的甲素同源2结构域,其与肌动蛋白长丝的快速增长的末端成核,与甲状腺同源1(FH1)结构域一起影响长丝生长。成核和伸长率的强度在含有的含量范围内变化。另外,大多数胞胎具有通过分子内相互作用调节肌动蛋白组件的保守结构域。氯化蛋白以几种方式与其他甲虫不同:其表达仅限于Purkinje细胞,它缺乏经典的自身抑制结构域,其FH1结构域具有最小的脯氨酸序列。我们发现Delphilin是一种不加速伸长率的肌动蛋白成核剂,但它与细丝的倒钩端结合。此外,Delphilin表现出肌动蛋白同种型的偏好,成核非用途肌动蛋白,但不是肌肉肌动蛋白,其尚未描述或系统地在其他格式中进行描述。最后,氯化蛋白是研究的第一种甲蛋白,其由分子内相互作用不受调节。我们推测我们观察到的活动是如何与其在小树突刺中的本地化一致。

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