Hiroyama Masami, Aoyagi Toshinori, Fujiwara Yoko, Birumachi Junichi, Shigematsu Yosuke, Kiwaki Kohji, Tasaki Ryuji, Endo Fumio, Tanoue Akito
Department of Pharmacology, National Research Institute for Child Health and Development, 2-10-1 Okura, Setagaya-ku, Tokyo 157-8535, Japan.
Mol Endocrinol. 2007 Jan;21(1):247-58. doi: 10.1210/me.2006-0069. Epub 2006 Oct 4.
[Arg8]Vasopressin (AVP) has an antilipolytic action on adipocytes, but little is known about the mechanisms involved. Here, we examined the involvement of the V1a receptor in the antilipolytic effect of AVP using V1a receptor-deficient (V1aR-/-) mice. The levels of blood glycerol were increased in V1aR-/- mice. The levels of ketone bodies, such as acetoacetic acid and 3-hydroxybutyric acid, the products of the lipid metabolism, were increased in V1aR-/- mice under a fasting condition. Triacylglyceride and free fatty acid levels in blood were decreased in V1aR-/- mice. Furthermore, measurements with tandem mass spectrometry determined that carnitine and acylcarnitines in serum, the products of beta-oxidation, were increased in V1aR-/- mice. Most acylcarnitines were increased in V1aR-/- mice, especially in the case of 2-carbon (C2), C10:1, C10, C14:1, C16, C18:1, and hydroxy-18:1-carbon (OH-C18:1)-acylcarnitines under feeding rather than under fasting conditions. The analysis of tissue C2-acylcarnitine level showed that beta-oxidation was promoted in muscle under the feeding condition and in liver under the fasting condition. An in vitro assay using brown adipocytes showed that the cells of V1aR-/- mice were more sensitive to isoproterenol for lipolysis. These results suggest that the lipid metabolism is enhanced in V1aR-/- mice. The cAMP level was enhanced in V1aR-/- mice in response to isoproterenol. The phosphorylation of Akt by insulin stimulation was reduced in V1aR-/- mice. These results suggest that insulin signaling is suppressed in V1aR-/- mice. In addition, the total bile acid, taurine, and cholesterol levels in blood were increased, and an enlargement of the cholecyst was observed in V1aR-/- mice. These results indicated that the production of bile acid was enhanced by the increased level of cholesterol and taurine. Therefore, these results indicated that AVP could modulate the lipid metabolism by the antilipolytic action and the synthesis of bile acid via the V1a receptor.
[精氨酸8]加压素(AVP)对脂肪细胞具有抗脂解作用,但其涉及的机制尚不清楚。在此,我们使用V1a受体缺陷(V1aR-/-)小鼠研究了V1a受体在AVP抗脂解作用中的参与情况。V1aR-/-小鼠的血液甘油水平升高。在禁食条件下,V1aR-/-小鼠体内脂代谢产物酮体(如乙酰乙酸和3-羟基丁酸)的水平升高。V1aR-/-小鼠血液中的三酰甘油和游离脂肪酸水平降低。此外,串联质谱测量确定,V1aR-/-小鼠血清中β-氧化产物肉碱和酰基肉碱增加。大多数酰基肉碱在V1aR-/-小鼠中增加,特别是在进食而非禁食条件下的2-碳(C2)、C10:1、C10、C14:1、C16、C18:1和羟基-18:1-碳(OH-C18:1)-酰基肉碱的情况下。组织C2-酰基肉碱水平分析表明,在进食条件下肌肉中的β-氧化以及禁食条件下肝脏中的β-氧化均得到促进。使用棕色脂肪细胞进行的体外试验表明,V1aR-/-小鼠的细胞对异丙肾上腺素的脂解作用更敏感。这些结果表明V1aR-/-小鼠的脂代谢增强。V1aR-/-小鼠对异丙肾上腺素的反应中cAMP水平升高。胰岛素刺激下V1aR-/-小鼠中Akt的磷酸化减少。这些结果表明V1aR-/-小鼠中的胰岛素信号传导受到抑制。此外,V1aR-/-小鼠血液中的总胆汁酸、牛磺酸和胆固醇水平升高,并且观察到胆囊增大。这些结果表明胆固醇和牛磺酸水平升高促进了胆汁酸的产生。因此,这些结果表明AVP可通过抗脂解作用和经由V1a受体的胆汁酸合成来调节脂代谢。