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Palmitoylation as a Functional Regulator of Neurotransmitter Receptors

机译:棕榈酰化作为神经递质受体的功能调节剂

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摘要

The majority of neuronal proteins involved in cellular signaling undergo different posttranslational modifications significantly affecting their functions. One of these modifications is a covalent attachment of a 16-C palmitic acid to one or more cysteine residues (S-palmitoylation) within the target protein. Palmitoylation is a reversible modification, and repeated cycles of palmitoylation/depalmitoylation might be critically involved in the regulation of multiple signaling processes. Palmitoylation also represents a common posttranslational modification of the neurotransmitter receptors, including G protein-coupled receptors (GPCRs) and ligand-gated ion channels (LICs). From the functional point of view, palmitoylation affects a wide span of neurotransmitter receptors activities including their trafficking, sorting, stability, residence lifetime at the cell surface, endocytosis, recycling, and synaptic clustering. This review summarizes the current knowledge on the palmitoylation of neurotransmitter receptors and its role in the regulation of receptors functions as well as in the control of different kinds of physiological and pathological behavior.
机译:参与细胞信号转导的大多数神经元蛋白会经历不同的翻译后修饰,从而显着影响其功能。这些修饰之一是16-C棕榈酸与靶蛋白内一个或多个半胱氨酸残基(S-棕榈酰化)的共价结合。棕榈酰化是可逆的修饰,并且棕榈酰化/去棕榈酰化的重复循环可能在多个信号传导过程的调节中至关重要。棕榈酰化还代表神经递质受体的常见翻译后修饰,包括G蛋白偶联受体(GPCR)和配体门控离子通道(LIC)。从功能的角度来看,棕榈酰化影响广泛的神经递质受体活性,包括其运输,分选,稳定性,在细胞表面的停留时间,内吞作用,再循环和突触聚集。这篇综述总结了有关神经递质受体的棕榈酰化及其在调节受体功能以及在控制各种生理和病理行为中的作用的最新知识。

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