Section for Cell Biology and Physiology, Department of Biology, Faculty of Science, University of Copenhagen, Copenhagen, Denmark.
Section for Molecular Disease Biology, Department of Veterinary Disease Biology, Faculty of Health and Medical Sciences, University of Copenhagen, Copenhagen, Denmark.
Sci Rep. 2017 Oct 12;7(1):13101. doi: 10.1038/s41598-017-13298-z.
Adipose tissue takes up glucose and releases lactate, thereby contributing significantly to systemic glucose and lactate homeostasis. This implies the necessity of upregulation of net acid and lactate flux capacity during adipocyte differentiation and function. However, the regulation of lactate- and acid/base transporters in adipocytes is poorly understood. Here, we tested the hypothesis that adipocyte thermogenesis, browning and differentiation are associated with an upregulation of plasma membrane lactate and acid/base transport capacity that in turn is important for adipocyte metabolism. The mRNA and protein levels of the lactate-H transporter MCT1 and the Na,HCO cotransporter NBCe1 were upregulated in mouse interscapular brown and inguinal white adipose tissue upon cold induction of thermogenesis and browning. MCT1, MCT4, and NBCe1 were furthermore strongly upregulated at the mRNA and protein level upon differentiation of cultured pre-adipocytes. Adipocyte differentiation was accompanied by increased plasma membrane lactate flux capacity, which was reduced by MCT inhibition and by MCT1 knockdown. Finally, in differentiated brown adipocytes, glycolysis (assessed as ECAR), and after noradrenergic stimulation also oxidative metabolism (OCR), was decreased by MCT inhibition. We suggest that upregulation of MCT1- and MCT4-mediated lactate flux capacity and NBCe1-mediated HCO/pH homeostasis are important for the physiological function of mature adipocytes.
脂肪组织摄取葡萄糖并释放乳酸,从而对全身葡萄糖和乳酸稳态有重要贡献。这意味着在脂肪细胞分化和功能过程中,净酸和乳酸通量能力的上调是必要的。然而,脂肪细胞中乳酸和酸碱转运体的调节机制尚不清楚。在这里,我们检验了这样一个假设,即脂肪细胞的产热、棕色化和分化与质膜乳酸和酸碱转运能力的上调有关,而这反过来又对脂肪细胞的代谢很重要。在冷诱导产热和棕色化过程中,小鼠肩胛间棕色和腹股沟白色脂肪组织中乳酸-H 转运蛋白 MCT1 和 Na,HCO3 共转运蛋白 NBCe1 的 mRNA 和蛋白水平上调。在培养的前脂肪细胞分化过程中,MCT1、MCT4 和 NBCe1 的 mRNA 和蛋白水平也被强烈上调。脂肪细胞分化伴随着质膜乳酸通量能力的增加,这种增加可被 MCT 抑制和 MCT1 敲低所减少。最后,在分化的棕色脂肪细胞中,MCT 抑制降低了糖酵解(以 ECAR 评估),以及去甲肾上腺素刺激后的氧化代谢(OCR)。我们认为,MCT1 和 MCT4 介导的乳酸通量能力和 NBCe1 介导的 HCO3-/pH 稳态的上调,对于成熟脂肪细胞的生理功能是重要的。