Key Laboratory of Animal Physiology and Biochemistry, College of Veterinary Medicine, Nanjing Agricultural University, Nanjing 210095, China.
School of Life Science and Technology, China Pharmaceutical University, Nanjing 210009, China.
Sci Rep. 2016 Sep 2;6:32580. doi: 10.1038/srep32580.
(-)-Hydroxycitric acid (HCA) suppresses fatty acid synthesis in animals, but its biochemical mechanism in poultry is unclear. This study identified the key proteins associated with fat metabolism and elucidated the biochemical mechanism of (-)-HCA in broiler chickens. Four groups (n = 30 each) received a diet supplemented with 0, 1000, 2000 or 3000 mg/kg (-)-HCA for 4 weeks. Of the differentially expressed liver proteins, 40 and 26 were identified in the mitochondrial and cytoplasm respectively. Pyruvate dehydrogenase E1 components (PDHA1 and PDHB), dihydrolipoyl dehydrogenase (DLD), aconitase (ACO2), a-ketoglutarate dehydrogenase complex (DLST), enoyl-CoA hydratase (ECHS1) and phosphoglycerate kinase (PGK) were upregulated, while NADP-dependent malic enzyme (ME1) was downregulated. Biological network analysis showed that the identified proteins were involved in glycometabolism and lipid metabolism, whereas PDHA1, PDHB, ECHS1, and ME1 were identified in the canonical pathway by Ingenuity Pathway Analysis. The data indicated that (-)-HCA inhibited fatty acid synthesis by reducing the acetyl-CoA supply, via promotion of the tricarboxylic acid cycle (upregulation of PDHA1, PDHB, ACO2, and DLST expression) and inhibition of ME1 expression. Moreover, (-)-HCA promoted fatty acid beta-oxidation by upregulating ECHS1 expression. These results reflect a biochemically relevant mechanism of fat reduction by (-)-HCA in broiler chickens.
(-)-羟基柠檬酸(HCA)抑制动物体内脂肪酸的合成,但它在禽类中的生化机制尚不清楚。本研究鉴定了与脂肪代谢相关的关键蛋白,并阐明了(-)-HCA 在肉鸡中的生化机制。四组(每组 30 只)分别接受添加 0、1000、2000 或 3000mg/kg(-)-HCA 的饮食 4 周。在差异表达的肝脏蛋白中,线粒体和细胞质分别鉴定出 40 种和 26 种。丙酮酸脱氢酶 E1 成分(PDHA1 和 PDHB)、二氢乳清酸脱氢酶(DLD)、顺乌头酸酶(ACO2)、α-酮戊二酸脱氢酶复合物(DLST)、烯酰 CoA 水合酶(ECHS1)和磷酸甘油酸激酶(PGK)上调,而 NADP 依赖性苹果酸酶(ME1)下调。生物网络分析表明,所鉴定的蛋白参与糖代谢和脂代谢,而 PDHA1、PDHB、ECHS1 和 ME1 通过 Ingenuity 通路分析被鉴定为经典途径。数据表明,(-)-HCA 通过减少乙酰辅酶 A 的供应来抑制脂肪酸的合成,这是通过促进三羧酸循环(PDHA1、PDHB、ACO2 和 DLST 表达上调)和抑制 ME1 表达来实现的。此外,(-)-HCA 通过上调 ECHS1 表达促进脂肪酸的β-氧化。这些结果反映了(-)-HCA 在肉鸡中减少脂肪的生化相关机制。