Transsulfuration pathway: a targeting neuromodulator in Parkinson's disease.

IF 3.4 3区 医学 Q2 NEUROSCIENCES
Reviews in the Neurosciences Pub Date : 2023-07-07 Print Date: 2023-12-15 DOI:10.1515/revneuro-2023-0039
Andrea Corona-Trejo, María E Gonsebatt, Cristina Trejo-Solis, Victoria Campos-Peña, Laura Itzel Quintas-Granados, Edgar Yebrán Villegas-Vázquez, Octavio Daniel Reyes-Hernández, Vicente Jesús Hernández-Abad, Gabriela Figueroa-González, Daniela Silva-Adaya
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引用次数: 0

Abstract

The transsulfuration pathway (TSP) is a metabolic pathway involving sulfur transfer from homocysteine to cysteine. Transsulfuration pathway leads to many sulfur metabolites, principally glutathione, H2S, taurine, and cysteine. Key enzymes of the TSP, such as cystathionine β-synthase and cystathionine γ-lyase, are essential regulators at multiple levels in this pathway. TSP metabolites are implicated in many physiological processes in the central nervous system and other tissues. TSP is important in controlling sulfur balance and optimal cellular functions such as glutathione synthesis. Alterations in the TSP and related pathways (transmethylation and remethylation) are altered in several neurodegenerative diseases, including Parkinson's disease, suggesting their participation in the pathophysiology and progression of these diseases. In Parkinson's disease many cellular processes are comprised mainly those that regulate redox homeostasis, inflammation, reticulum endoplasmic stress, mitochondrial function, oxidative stress, and sulfur content metabolites of TSP are involved in these damage processes. Current research on the transsulfuration pathway in Parkinson's disease has primarily focused on the synthesis and function of certain metabolites, particularly glutathione. However, our understanding of the regulation of other metabolites of the transsulfuration pathway, as well as their relationships with other metabolites, and their synthesis regulation in Parkinson´s disease remain limited. Thus, this paper highlights the importance of studying the molecular dynamics in different metabolites and enzymes that affect the transsulfuration in Parkinson's disease.

转硫途径:帕金森病的靶向神经调节剂。
硫转途径(TSP)是硫从同型半胱氨酸转移到半胱氨酸的代谢途径。转硫途径产生许多硫代谢物,主要是谷胱甘肽、硫化氢、牛磺酸和半胱氨酸。TSP的关键酶,如半胱硫氨酸β-合酶和半胱硫氨酸γ-裂解酶,在这一通路的多个水平上都是必不可少的调节因子。TSP代谢物参与中枢神经系统和其他组织的许多生理过程。TSP在控制硫平衡和优化细胞功能(如谷胱甘肽合成)中起重要作用。在包括帕金森病在内的几种神经退行性疾病中,TSP和相关通路(转甲基化和再甲基化)的改变都发生了改变,表明它们参与了这些疾病的病理生理和进展。在帕金森病中,许多细胞过程主要包括那些调节氧化还原稳态的过程,炎症、网状内质应激、线粒体功能、氧化应激和TSP的硫含量代谢物参与这些损伤过程。目前对帕金森病转硫途径的研究主要集中在某些代谢物的合成和功能上,特别是谷胱甘肽。然而,我们对转硫途径中其他代谢物的调控,以及它们与其他代谢物的关系,以及它们在帕金森病中的合成调控的了解仍然有限。因此,本文强调了研究影响帕金森病转硫的不同代谢物和酶的分子动力学的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Reviews in the Neurosciences
Reviews in the Neurosciences 医学-神经科学
CiteScore
9.40
自引率
2.40%
发文量
54
审稿时长
6-12 weeks
期刊介绍: Reviews in the Neurosciences provides a forum for reviews, critical evaluations and theoretical treatment of selective topics in the neurosciences. The journal is meant to provide an authoritative reference work for those interested in the structure and functions of the nervous system at all levels of analysis, including the genetic, molecular, cellular, behavioral, cognitive and clinical neurosciences. Contributions should contain a critical appraisal of specific areas and not simply a compilation of published articles.
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