Department of Cardiology, Xi'an No.3 Hospital/The Affiliated Hospital of Northwest University, Faculty of Life Sciences and Medicine, Northwest University, Xi'an, 710021, China.
Key Laboratory of Resource Biology and Biotechnology in Western China, Ministry of Education, Faculty of Life Sciences and Medicine, Northwest University, Xi'an, 710069, China.
Acta Pharmacol Sin. 2023 Apr;44(4):710-725. doi: 10.1038/s41401-022-00991-7. Epub 2022 Oct 7.
C1q/tumor necrosis factor (TNF) related proteins (CTRPs) is a newly discovered adipokine family with conservative structure and ubiquitous distribution and is secreted by adipose tissues. Recently, CTRPs have attracted increasing attention due to the its wide-ranging effects upon inflammation and metabolism. To-date, 15 members of CTRPs (CTRP1-15) with the characteristic C1q domain have been characterized. Earlier in-depth phenotypic analyses of mouse models of CTRPs deficiency have also unveiled ample function of CTRPs in inflammation and metabolism. This review focuses on the rise of CTRPs, with a special emphasis on the latest discoveries with regards to the effects of the CTRP family on inflammation and metabolism as well as related diseases. We first introduced the structure of characteristic domain and polymerization of CTRPs to reveal its pleiotropic biological functions. Next, intimate association of CTRP family with inflammation and metabolism, as well as the involvement of CTRPs as nodes in complex molecular networks, were elaborated. With expanding membership of CTRP family, the information presented here provides new perspectives for therapeutic strategies to improve inflammatory and metabolic abnormalities.
C1q/肿瘤坏死因子(TNF)相关蛋白(CTRPs)是一个新发现的脂肪因子家族,具有保守的结构和广泛的分布,由脂肪组织分泌。最近,由于 CTRPs 对炎症和代谢的广泛影响,它引起了越来越多的关注。迄今为止,已经鉴定出具有特征性 C1q 结构域的 15 种 CTRPs(CTRP1-15)。早期对 CTRPs 缺失的小鼠模型的深入表型分析也揭示了 CTRPs 在炎症和代谢中的大量功能。这篇综述重点介绍了 CTRPs 的兴起,特别强调了 CTRP 家族对炎症和代谢以及相关疾病影响的最新发现。我们首先介绍了 CTRPs 的特征结构域和聚合,以揭示其多种生物学功能。接下来,阐述了 CTRP 家族与炎症和代谢的密切关系,以及 CTRPs 作为复杂分子网络中的节点的参与。随着 CTRP 家族成员的不断增加,这里提供的信息为改善炎症和代谢异常的治疗策略提供了新的视角。