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首页> 外文期刊>Trends in Neurosciences >Protein modifications involved in neurotransmitter and gasotransmitter signaling.
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Protein modifications involved in neurotransmitter and gasotransmitter signaling.

机译:蛋白修饰涉及神经递质和气体递质信号。

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摘要

Covalent modifications of intracellular proteins, such as phosphorylation, are generally thought to occur as secondary or tertiary responses to neurotransmitters, following the intermediation of membrane receptors and second messengers such as cyclic AMP. By contrast, the gasotransmitter nitric oxide directly S-nitrosylates cysteine residues in diverse intracellular proteins. Recently, hydrogen sulfide has been acknowledged as a gasotransmitter, which analogously sulfhydrates cysteine residues in proteins. Cysteine residues are also modified by palmitoylation in response to neurotransmitter signaling, possibly in reciprocity with S-nitrosylation. Neurotransmission also elicits sumoylation and acetylation of lysine residues within diverse proteins. This review addresses how these recently appreciated protein modifications impact our thinking about ways in which neurotransmission regulates intracellular protein disposition.
机译:通常认为,细胞内蛋白质的共价修饰(例如磷酸化)是在膜受体和第二信使(例如环AMP)介导后,作为对神经递质的次级或三级反应而发生的。相比之下,气体递质一氧化氮直接将S-亚硝酰化各种细胞内蛋白质中的半胱氨酸残基。近年来,硫化氢已被公认是一种气体递质,它类似地使蛋白质中的半胱氨酸残基硫酸化。半胱氨酸残基也响应神经递质信号传导而通过棕榈酰化修饰,可能与S-亚硝基化反应互易。神经传递还引起多种蛋白质中赖氨酸残基的磺酰化和乙酰化。这项审查解决这些最近赞赏的蛋白质修饰如何影响我们有关神经传递调节细胞内蛋白质处置方式的思考。

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