Zhang Yuanyuan, Tian Zhichen, Ye Haibo, Sun Xiaomei, Zhang Huiming, Sun Yujia, Mao Yongjiang, Yang Zhangping, Li Mingxun
Joint International Research Laboratory of Agriculture and Agri-Product Safety, the Ministry of Education of China, Yangzhou University, 225009, Yangzhou, Jiangsu, China.
Key Laboratory of Animal Genetics & Breeding and Molecular Design of Jiangsu province, College of Animal Science and Technology, Yangzhou University, 225009, Yangzhou, Jiangsu, China.
Cell Death Discov. 2022 May 20;8(1):268. doi: 10.1038/s41420-022-01062-w.
As noncoding RNAs, circular RNAs (circRNAs) are covalently enclosed endogenous biomolecules in eukaryotes that have tissue specificity and cell specificity. circRNAs were once considered a rare splicing byproduct. With the development of high-throughput sequencing, it has been confirmed that they are expressed in thousands of mammalian genes. To date, only a few circRNA functions and regulatory mechanisms have been verified. Adipose is the main tissue for body energy storage and energy supply. Adipocyte metabolism is a physiological process involving a series of genes and affects biological activities in the body, such as energy metabolism, immunity, and signal transmission. When adipocyte formation is dysregulated, it will cause a series of diseases, such as atherosclerosis, obesity, fatty liver, and diabetes. In recent years, many noncoding RNAs involved in adipocyte metabolism have been revealed. This review provides a comprehensive overview of the basic structure and biosynthetic mechanism of circRNAs, and further discusses the circRNAs related to adipocyte formation in adipose tissue and liver. Our review will provide a reference for further elucidating the genetic regulation mechanism of circRNAs involved in adipocyte metabolism.
作为非编码RNA,环状RNA(circRNAs)是真核生物中具有组织特异性和细胞特异性的共价封闭内源性生物分子。circRNAs曾被认为是一种罕见的剪接副产物。随着高通量测序技术的发展,已证实它们在数千个哺乳动物基因中表达。迄今为止,仅有少数circRNA的功能和调控机制得到验证。脂肪是机体能量储存和供应的主要组织。脂肪细胞代谢是一个涉及一系列基因的生理过程,并影响机体中的生物活性,如能量代谢、免疫和信号传递。当脂肪细胞形成失调时,会引发一系列疾病,如动脉粥样硬化、肥胖、脂肪肝和糖尿病。近年来,已揭示出许多参与脂肪细胞代谢的非编码RNA。本综述全面概述了circRNAs的基本结构和生物合成机制,并进一步讨论了与脂肪组织和肝脏中脂肪细胞形成相关的circRNAs。我们的综述将为进一步阐明参与脂肪细胞代谢的circRNAs的遗传调控机制提供参考。