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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Complex formation between the postsynaptic scaffolding protein gephyrin, profilin, and Mena: a possible link to the microfilament system.
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Complex formation between the postsynaptic scaffolding protein gephyrin, profilin, and Mena: a possible link to the microfilament system.

机译:突触后支架蛋白gephyrin,profilin和Mena之间的复合物形成:可能与微丝系统有关。

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Gephyrin is an essential component of the postsynaptic cortical protein network of inhibitory synapses. Gephyrin-based scaffolds participate in the assembly as well as the dynamics of receptor clusters by connecting the cytoplasmic domains of glycine and GABA(A) receptor polypeptides to two cytoskeletal systems, microtubules and microfilaments. Although there is evidence for a physical linkage between gephyrin and microtubules, the interaction between gephyrin and microfilaments is not well understood so far. Here, we show that neuronal gephyrin interacts directly with key regulators of microfilament dynamics, profilin I and neuronal profilin IIa, and with microfilament adaptors of the mammalian enabled (Mena)/vasodilator stimulated phosphoprotein (VASP) family, including neuronal Mena. Profilin and Mena/VASP coprecipitate with gephyrin from tissue and cells, and complex formation requires the E-domain of gephyrin, not the proline-rich central domain. Consequently, gephyrin is not a ligand for the proline-binding motif of profilins, as suspected previously. Instead, it competes with G-actin and phospholipids for the same binding site on profilin. Gephyrin, profilin, and Mena/VASP colocalize at synapses of rat spinal cord and cultivated neurons and in gephyrin clusters expressed in transfected cells. Thus, Mena/VASP and profilin can contribute to the postulated linkage between receptors, gephyrin scaffolds, and the microfilament system and may regulate the microfilament-dependent receptor packing density and dynamics at inhibitory synapses.
机译:卟啉是抑制突触的突触后皮质蛋白网络的重要组成部分。通过将甘氨酸和GABA(A)受体多肽的胞质结构域连接到两个细胞骨架系统,微管和微丝,基于Gephyrin的支架参与组装以及受体簇的动力学。尽管有证据表明,gephyrin和微管之间存在物理联系,但到目前为止,gephyrin和微丝之间的相互作用尚不十分清楚。在这里,我们显示神经元的gephyrin直接与微丝动力学的关键调节因子,profilin I和神经元profilin IIa相互作用,并与哺乳动物使能的(Mena)/血管扩张剂刺激的磷蛋白(VASP)家族的微丝衔接子相互作用,包括神经元的Mena。 Profilin和Mena / VASP与gephyrin从组织和细胞中共沉淀,而复合物的形成需要gephyrin的E结构域,而不是富含脯氨酸的中央结构域。因此,如先前所怀疑,gephyrin不是脯氨酸蛋白的脯氨酸结合基序的配体。相反,它与G-肌动蛋白和磷脂竞争在profilin上的相同结合位点。 Gephyrin,profilin和Mena / VASP共定位在大鼠脊髓和培养的神经元的突触中,并在转染细胞中表达的gephyrin簇中。因此,Mena / VASP和profilin可以促进受体,gephyrin支架和微丝系统之间的假定联系,并可以调节微丝依赖性受体的堆积密度和抑制突触的动力学。

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