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Activity-regulated trafficking of the palmitoyl-acyl transferase DHHC5

机译:活性调节的棕榈酰基-酰基转移酶DHHC5的运输

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Synaptic plasticity is mediated by the dynamic localization of proteins to and from synapses. This is controlled, in part, through activity-induced palmitoylation of synaptic proteins. Here we report that the ability of the palmitoyl-acyl transferase, DHHC5, to palmitoylate substrates in an activity-dependent manner is dependent on changes in its subcellular localization. Under basal conditions, DHHC5 is bound to PSD-95 and Fyn kinase, and is stabilized at the synaptic membrane through Fyn-mediated phosphorylation of a tyrosine residue within the endocytic motif of DHHC5. In contrast, DHHC5’s substrate, δ-catenin, is highly localized to dendritic shafts, resulting in the segregation of the enzyme/substrate pair. Neuronal activity disrupts DHHC5/PSD-95/Fyn kinase complexes, enhancing DHHC5 endocytosis, its translocation to dendritic shafts and its association with δ-catenin. Following DHHC5-mediated palmitoylation of δ-catenin, DHHC5 and δ-catenin are trafficked together back into spines where δ-catenin increases cadherin stabilization and recruitment of AMPA receptors to the synaptic membrane.
机译:突触可塑性由蛋白质与突触之间的动态定位介导。这部分地通过活性诱导的突触蛋白的棕榈酰化来控制。在这里,我们报告的棕榈酰基-酰基转移酶DHHC5,以活性依赖的方式棕榈酰化底物的能力取决于其亚细胞定位的变化。在基础条件下,DHHC5与PSD-95和Fyn激酶结合,并通过FHC介导的DHHC5内吞基序内酪氨酸残基的磷酸化而稳定在突触膜上。相反,DHHC5的底物δ-catenin高度定位于树突状轴,导致酶/底物对分离。神经元活性破坏DHHC5 / PSD-95 / Fyn激酶复合物,增强DHHC5的内吞作用,其易位至树突状干及其与δ-catenin的结合。 DHHC5介导的δ-catenin棕榈酰化之后,DHHC5和δ-catenin一起运回棘突,其中δ-catenin增强了钙粘蛋白的稳定性并将AMPA受体募集到突触膜。

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