PKA, as a key factor in the cell signal transduction, plays critical roles in the regulation of homeostasis of lipid metabolism. PKA comprised of RIIβ subunit is distributed in brain and adipocytes. We created the RIIβ knockout mice. The mice are healthy and show lean phenotypes by 50% adiposity reduction comparing to wild type, and have normal food-intake. Additionally, the mice exhibit higher expression of UCP-1, a marker of browning of adipocytes, and elevated thermogenesis as well as raised basal metabolic rate, which suggest that RIIβ knockout mice have an enhanced browning level. We confirmed that the deficiency of RIIβ in hypothalamic GABAergic neurons confers these phenotypes; however, the mechanism is unknown. We hypothesize that PKA-RIIβ signaling in hypothalamic GABAergic neurons might be involved in the control of homeostasis of lipid metabolism by regulating the browning of adipocytes. In this project, we plan to study on the mechanism underlying PKA-RIIβ signaling in the hypothalamic GABAergic neurons regulates the browning of peripheral adipose tissues, with the help of our newly developed genetically engineered mutants for enzymatic study and transcriptome technology. This study will be helpful to understand the mechanism controlling the metabolism and advantageous to the new drug discovery targeted to enzyme, also will provide a new approach for the treatment of metabolic diseases and obesity.
PKA是重要细胞信号传导分子,调控机体脂肪代谢稳态。含有RIIβ亚基的PKA分布在脂肪细胞与神经元。我们构建了RIIβ亚基敲除小鼠,该小鼠健康且摄食正常,但却呈现明显的低脂消瘦表型,全身脂肪含量仅为正常值50%;此外,其脂肪组织褐变相关分子UCP-1表达升高,机体产热量与基础代谢率增加,提示其脂肪细胞褐变水平增强,并可能由此而获得低脂消瘦表型。我们确定了下丘脑GABA能神经元RIIβ亚基缺失是导致以上表型的原因,但机制不明。我们推测:下丘脑GABA能神经元PKA-RIIβ信号通路,可能是通过调控脂肪组织褐变,来实现对机体脂肪稳态的调节。本项目将研究PKA-RIIβ信号对脂肪组织褐变的调控机制,并利用我们新研发的基因工程酶学技术和转录子组学技术,阐明PKA调控褐变的神经与分子机理。该研究有助于深入认识脂肪代谢中枢调控的分子机理,有利于酶类为靶点的新药研究,为肥胖等代谢疾病的治疗提供新途径。
PKA是重要细胞信号传导分子,调控机体脂肪代谢稳态。含有RIIβ亚基的PKA分布在脂肪细胞与神经元。我们构建了RIIβ亚基敲除小鼠,该小鼠健康且摄食正常,但却呈现明显的低脂消瘦表型,全身脂肪含量仅为正常值50%;此外,其脂肪组织褐变相关分子UCP-1表达升高,机体产热量与基础代谢率增加,提示其脂肪细胞褐变水平增强,并可能由此而获得低脂消瘦表型。我们确定了下丘脑GABA能神经元RIIβ亚基缺失是导致以上表型的原因,但机制不明。本研究中,我们发现:下丘脑GABA能神经元PKA-RIIβ信号通路是通过调控脂肪组织褐变,并由此实现对机体脂肪稳态的调节。本项目研究了PKA-RIIβ信号对脂肪组织褐变的调控机制,并利用我们新研发的基因工程酶学技术和转录子组学技术,初步阐明了PKA调控褐变的神经与分子机理。该研究有助于深入认识脂肪代谢中枢调控的分子机理,有利于酶类为靶点的新药研究,为肥胖等代谢.疾病的治疗提供新途径。
{{i.achievement_title}}
数据更新时间:2023-05-31
2016年夏秋季南极布兰斯菲尔德海峡威氏棘冰鱼脂肪酸组成及其食性指示研究
视网膜母细胞瘤的治疗研究进展
PI3K-AKT-mTOR通路对骨肉瘤细胞顺铂耐药性的影响及其机制
当归补血汤促进异体移植的肌卫星细胞存活
TGF-β1-Smad2/3信号转导通路在百草枯中毒致肺纤维化中的作用
PKA-RIIβ信号通路在下丘脑GABA能神经元参与调控瘦素敏感性的机制研究
顶叶皮层调控下丘脑参与棕色脂肪组织活化的机制研究
诱导白色脂肪细胞褐变和调控脂肪组织代谢在莱菔硫烷抗肥胖中的作用及其分子机制研究
双孢蘑菇采后褐变进程的气调调控机制