Autoantibody against beta(1)-adrenoceptor promotes the differentiation of natural regulatory T cells from activated CD4(+) T cells by up-regulating AMPK-mediated fatty acid oxidation
机构:[1]Department of Physiology and Pathophysiology, School of Basic Medical Sciences, Capital Medical University, 100069 Beijing, China.[2]Department of Pathology, School of Basic Medical Sciences, Shanxi Medical University, 030001 Taiyuan, China.[3]Beijing Anzhen Hospital, Capital Medical University, 100029 Beijing, China.首都医科大学附属安贞医院[4]Department of Cardiology and Institute of Vascular Medicine, Peking University Third Hospital, 100191 Beijing, China.[5]Beijing Key Laboratory of Cardiovascular Receptors Research, 100191 Beijing, China.[6]Beijing Key Laboratory of Cardiovascular Diseases Related to Metabolic Disturbance, 100069 Beijing, China
Therapeutic adoptive transfer of natural regulatory T cells (nTreg, CD4(+) CD25(+) Foxp3(+) T cells) or in vivo selective expansion of nTreg cells has been demonstrated to improve the cardiac function in various cardiovascular disease models. The differentiation of nTreg cells is mediated by catecholamines via beta(1)-adrenergic receptor (beta(1)-AR) activation. Autoantibody against beta(1)-adrenoceptor (beta(1)-AA) as a beta(1)-AR agonist is closely associated with the occurrence and deterioration of cardiac dysfunction. However, whether beta(1)-AA has any impact on nTreg cells has not been reported. The aim of the present study was intended to assess the potential impact of beta(1)-AA on nTreg cell differentiation and explore the underlying mechanism. It was found that the expression of multiple proteins involved in nTreg cell differentiation, immunosuppressive function, and migration was up-regulated in mice after beta(1)-AA administration, suggesting that beta(1)-AA may promote nTreg cell activation. In vitro, beta(1)-AA promoted nTreg cell differentiation by up-regulating mitochondrial fatty acid oxidation (FAO) in activated CD4(+) T cells via AMP-activated protein kinase (AMPK) activation and mitochondrial membrane potential reduction. In addition, the AMPK agonist facilitated beta(1)-AA-mediated FAO and nTreg cell differentiation. To further confirm the role of AMPK in beta(1)-AA-mediated nTreg cell differentiation, beta(1)-AA was acted on the CD4(+) T cells isolated from AMPK-deficient (AMPK(-/-)) mice. The result showed that the effect of beta(1)-AA on nTreg cell differentiation was attenuated markedly after AMPK knockout. In conclusion, AMPK-mediated metabolic regulation targeting for nTreg cell restoration may be a promising therapeutic target for beta(1)-AA-positive patients with cardiac dysfunction.
基金:
Natural Science Foundation of China (NSFC)National Natural Science Foundation of China [81770393]; NSFCNational Natural Science Foundation of China [31871177]; Scientific Research Base Construction-Scientific and Technological Innovation Platform Metabolic Disorders Related Cardiovascular Diseases Research Platform Construction [PXM2015_014226_000062]
第一作者机构:[1]Department of Physiology and Pathophysiology, School of Basic Medical Sciences, Capital Medical University, 100069 Beijing, China.
通讯作者:
通讯机构:[1]Department of Physiology and Pathophysiology, School of Basic Medical Sciences, Capital Medical University, 100069 Beijing, China.[6]Beijing Key Laboratory of Cardiovascular Diseases Related to Metabolic Disturbance, 100069 Beijing, China
推荐引用方式(GB/T 7714):
Wenli Xu,Ye Wu,Li Wang,et al.Autoantibody against beta(1)-adrenoceptor promotes the differentiation of natural regulatory T cells from activated CD4(+) T cells by up-regulating AMPK-mediated fatty acid oxidation[J].CELL DEATH & DISEASE.2019,10(3):-.doi:10.1038/s41419-018-1209-2.
APA:
Wenli Xu,Ye Wu,Li Wang,Yan Bai,Yunhui Du...&Huirong Liu.(2019).Autoantibody against beta(1)-adrenoceptor promotes the differentiation of natural regulatory T cells from activated CD4(+) T cells by up-regulating AMPK-mediated fatty acid oxidation.CELL DEATH & DISEASE,10,(3)
MLA:
Wenli Xu,et al."Autoantibody against beta(1)-adrenoceptor promotes the differentiation of natural regulatory T cells from activated CD4(+) T cells by up-regulating AMPK-mediated fatty acid oxidation".CELL DEATH & DISEASE 10..3(2019):-