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甘丙肽-甘丙肽受体信号网络组件

An assembly of galanin-galanin receptor signaling network.

作者信息

Gopalakrishnan Lathika, Chatterjee Oishi, Raj Chinmayi, Pullimamidi Deepshika, Advani Jayshree, Mahadevan Anita, Keshava Prasad T S

机构信息

Institute of Bioinformatics, International Tech Park, Bangalore, 560066, India.

Manipal Academy of Higher Education (MAHE), Manipal, 576104, India.

出版信息

J Cell Commun Signal. 2021 Jun;15(2):269-275. doi: 10.1007/s12079-020-00590-3. Epub 2020 Nov 2.

Abstract

The galanin receptor family of proteins is present throughout the central nervous system and endocrine system. It comprises of three subtypes-GalR1, GalR2, and GalR3; all of which are G-protein-coupled receptors. Galanin predominantly acts as an inhibitory, hyper-polarizing neuromodulator, which has several physiological as well as pathological functions. Galanin has a role in mediating food intake, memory, sexual behavior, nociception and is also associated with diseases such as Alzheimer's disease, epilepsy, diabetes mellitus, and chronic pain. However, the understanding of signaling mechanisms of the galanin family of neuropeptides is limited and an organized pathway map is not yet available. Therefore, a detailed literature mining of the publicly available articles pertaining to the galanin receptor was followed by manual curation of the reactions and their integration into a map. This resulted in the cataloging of molecular reactions involving 64 molecules into five categories such as molecular association, activation/inhibition, catalysis, transport, and gene regulation. For enabling easy access of biomedical researchers, the galanin-galanin receptor signaling pathway data was uploaded to WikiPathways ( https://www.wikipathways.org/index.php/Pathway:WP4970 ), a freely available database of biological pathways.

摘要

甘丙肽蛋白受体家族存在于整个中枢神经系统和内分泌系统中。它由三种亚型组成——GalR1、GalR2和GalR3;所有这些都是G蛋白偶联受体。甘丙肽主要作为一种抑制性、超极化神经调质发挥作用,具有多种生理和病理功能。甘丙肽在介导食物摄入、记忆、性行为、痛觉方面发挥作用,还与阿尔茨海默病、癫痫、糖尿病和慢性疼痛等疾病有关。然而,对甘丙肽神经肽家族信号传导机制的了解有限,尚未有一个有条理的途径图谱。因此,在对与甘丙肽受体相关的公开文章进行详细的文献挖掘之后,对反应进行人工整理并将其整合到一个图谱中。这导致将涉及64个分子的分子反应归类为分子缔合、激活/抑制、催化、转运和基因调控等五类。为了方便生物医学研究人员获取,甘丙肽-甘丙肽受体信号通路数据已上传至WikiPathways(https://www.wikipathways.org/index.php/Pathway:WP4970),这是一个免费的生物途径数据库。

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