氨基酸
基因
转录调控
生物
转录因子
生物化学
酶
抄写(语言学)
新陈代谢
化学
语言学
哲学
作者
Zahra Mehrazad Saber,Yoshinori Takeuchi,Yuko Sawada,Yuichi Aita,Man Hei Ho,Samia Karkoutly,Duhan Tao,Kyoka Katabami,Hongzhi Wang,Yuki Murayama,Akito Shikama,Yukari Masuda,Yoshihiko Izumida,Takafumi Miyamoto,Takashi Matsuzaka,Takehito Sugasawa,Kazuhiro Takekoshi,Yasushi Kawakami,Hitoshi Shimano,Naoya Yahagi
标识
DOI:10.1016/j.bbrc.2021.10.027
摘要
High protein diet (HPD) is an affordable and positive approach in prevention and treatment of many diseases. It is believed that transcriptional regulation is responsible for adaptation after HPD feeding and Kruppel-like factor 15 (KLF15), a zinc finger transcription factor that has been proved to perform transcriptional regulation over amino acid, lipid and glucose metabolism, is known to be involved at least in part in this HPD response. To gain more insight into molecular mechanisms by which HPD controls expressions of genes involved in amino acid metabolism in the liver, we performed RNA-seq analysis of mice fed HPD for a short period (3 days). Compared to a low protein diet, HPD feeding significantly increased hepatic expressions of enzymes involved in the breakdown of all the 20 amino acids. Moreover, using KLF15 knockout mice and in vivo Ad-luc analytical system, we were able to identify Cth (cystathionine gamma-lyase) as a new target gene of KLF15 transcription as well as Ast (aspartate aminotransferase) as an example of KLF15-independent gene despite its remarkable responsiveness to HPD. These findings provide us with a clue to elucidate the entire transcriptional regulatory mechanisms of amino acid metabolic pathways.
科研通智能强力驱动
Strongly Powered by AbleSci AI