自噬
糖酵解
细胞生物学
生物钟
昼夜节律
生物
平衡
诱导剂
基因表达
化学
生物化学
新陈代谢
细胞凋亡
内分泌学
基因
作者
Yicheng Jiang,Yang Gu,Hai Xu,Xiaoyi Tian,Xuefeng Zhang,Xuefeng Zhang,Xiaojin Xu,Wenting Yan,Xiwen Zhang,Xiwen Zhang
标识
DOI:10.1186/s12860-020-00289-8
摘要
BACKGROUND: Trace elements function as essential cofactors that are involved in various biochemical processes in mammals. Autophagy is vital for nutrient supplement, which is an important Zeitegber for the circadian homeostasis in heart. Here, we considered the possibility that autophagy, as well as the cardiomyocyte clock and glycolysis are interlinked. Detrimental effects were observed when cardiac system is exposed to bromine containing drugs. This study investigated the effects and mechanisms of bromide on the circadian clock and glycolytic metabolism of H9C2 cardiomyocytes. RESULTS: In the present study, bromide does not affect cell viability and apoptosis of H9C2 cardiomyocytes. Bromide dampens the clock and glycolytic (Hk2 and Pkm2) gene expression rhythmicity in a dose-dependent manner. Additionally, bromide inhibits autophagic process in H9C2 cardiomyocytes. In contrast, rapamycin (an autophagy inducer) dramatically restores the inhibitory effect of NaBr on the mRNA expression levels of clock genes (Bmal1, Cry1 and Rorα) and glycolytic genes (Hk2 and Pkm2). CONCLUSIONS: Our results reveal that bromide represses the clock and glycolytic gene expression patterns, partially through inhibition of autophagy.
科研通智能强力驱动
Strongly Powered by AbleSci AI