Song Yu-Feng, Wu Kun, Tan Xiao-Ying, Zhang Li-Han, Zhuo Mei-Qin, Pan Ya-Xiong, Chen Qi-Liang
Key Laboratory of Freshwater Animal Breeding, Ministry of Agriculture, Fishery College, Huazhong Agricultural University, Wuhan 430070, China; Freshwater Aquaculture Collaborative Innovative Center of Hubei Province, Wuhan 430070, China.
Key Laboratory of Freshwater Animal Breeding, Ministry of Agriculture, Fishery College, Huazhong Agricultural University, Wuhan 430070, China; Freshwater Aquaculture Collaborative Innovative Center of Hubei Province, Wuhan 430070, China.
Gen Comp Endocrinol. 2015 Feb 1;212:92-9. doi: 10.1016/j.ygcen.2015.01.022. Epub 2015 Jan 31.
The present study was conducted to investigate the effects and mechanism of leptin influencing lipid metabolism in yellow catfish Pelteobagrus fulvidraco. To this end, hepatic lipid (in vivo experiment) and intracellular triglyceride (TG) (in vitro experiment) content, the activities and/or expression level of several enzymes (CPT-1, 6PGD, G6PD, FAS, ME and ICDH) as well as the mRNA expression of transcription factors (PPARα, PPARγ and SREBP-1) involved in lipid metabolism were determined. Using the primary hepatocytes of yellow catfish, specific inhibitors AG490 (JAK-STAT inhibitor) and wortmannin (IRS-PI3K inhibitor) were used to explore the signaling pathways of leptin effects on lipid metabolism. Intraperitoneal injection of recombinant human leptin (rt-hLEP) significantly reduced hepatic lipid content, activities of lipogenic enzymes (6PGD, G6PD, ME, ICDH and FAS) as well as mRNA levels of 6PGD, G6PD, FAS, PPARγ and SREBP-1 genes, but up-regulated activity and mRNA level of CPT-1 and PPARα. Using primary hepatocytes, rt-hLEP incubation also reduced intracellular TG content, mRNA levels of G6PD and PPARγ genes, but enhanced mRNA levels of PPARα, CPT-1 and SREBP-1. Leptin-induced effects could partially be reversed by specific inhibitors AG490, suggesting that JAK-STAT signaling pathways played important roles in the process of leptin-induced changes in lipid metabolism. Wortmannin significantly suppressed the decrease of TG content induced by leptin, reflecting that IRS-PI3K was involved in the leptin-mediate changes as well. To our knowledge, the present study provides, for the first time, evidence that rt-hLEP can increase lipolysis and reduce lipogenesis at the both enzymatic and molecular levels in fish with the combination of in vivo with in vitro studies, which serves to increase our understanding into the roles and mechanisms of leptin regulating lipid metabolism in fish.
本研究旨在探讨瘦素对黄颡鱼(Pelteobagrus fulvidraco)脂质代谢的影响及其机制。为此,测定了肝脏脂质(体内实验)和细胞内甘油三酯(TG)(体外实验)含量、几种酶(CPT-1、6PGD、G6PD、FAS、ME和ICDH)的活性和/或表达水平以及参与脂质代谢的转录因子(PPARα、PPARγ和SREBP-1)的mRNA表达。利用黄颡鱼原代肝细胞,使用特异性抑制剂AG490(JAK-STAT抑制剂)和渥曼青霉素(IRS-PI3K抑制剂)来探究瘦素影响脂质代谢的信号通路。腹腔注射重组人瘦素(rt-hLEP)显著降低了肝脏脂质含量、脂肪生成酶(6PGD、G6PD、ME、ICDH和FAS)的活性以及6PGD、G6PD、FAS、PPARγ和SREBP-1基因的mRNA水平,但上调了CPT-1和PPARα的活性和mRNA水平。使用原代肝细胞,rt-hLEP孵育也降低了细胞内TG含量、G6PD和PPARγ基因的mRNA水平,但提高了PPARα、CPT-1和SREBP-1的mRNA水平。瘦素诱导的效应可被特异性抑制剂AG490部分逆转,表明JAK-STAT信号通路在瘦素诱导的脂质代谢变化过程中起重要作用。渥曼青霉素显著抑制了瘦素诱导的TG含量降低,反映出IRS-PI3K也参与了瘦素介导的变化。据我们所知,本研究首次通过体内和体外研究相结合的方式,证明rt-hLEP在鱼类中可在酶和分子水平上增加脂肪分解并减少脂肪生成,这有助于增进我们对瘦素调节鱼类脂质代谢的作用和机制的理解。