TY - JOUR
T1 - Direct conversion of human myoblasts into brown-like adipocytes by engineered super-active PPARγ
AU - Zhu, Yanbei
AU - Yang, Rongze
AU - McLenithan, John
AU - Yu, Daozhan
AU - Wang, Hong
AU - Wang, Yaping
AU - Singh, Devinder
AU - Olson, John
AU - Sztalryd, Carole
AU - Zhu, Dalong
AU - Gong, Da Wei
N1 - Publisher Copyright:
© 2015 The Obesity Society.
PY - 2015/5/1
Y1 - 2015/5/1
N2 - Objective To determine whether super-activation of PPARγ can reprogram human myoblasts into brown-like adipocytes and to establish a new cell model for browning research. Methods To enhance the PPARγ signaling, M3, the transactivation domain of MyoD, was fused to PPARγ. PPARγ and M3-PPARγ-lentiviral vectors were used to convert human myoblasts into adipocytes. Brown adipocyte markers of the reprogrammed adipocytes were assessed by qPCR and protein analyses. White adipocytes differentiated from subcutaneous stromal vascular cells and perithyroid brown fat tissues were used as references. Results In transient transfections, M3-PPARγ had a stronger constitutive activity than PPARγ by reporter assay. Although the transduction of either PPARγ or M3-PPARγ induced adipogenesis in myoblasts, M3-PPARγ drastically induced the brown adipocyte markers of UCP1, CIDEA, and PRDM16 by 1,050, 2.4, and 5.0 fold, respectively and increased mitochondria contents by 4 fold, compared to PPARγ. Conclusions Super-activation of PPARγ can effectively convert human myoblasts into brown-like adipocytes and a new approach to derive brown-like adipocytes.
AB - Objective To determine whether super-activation of PPARγ can reprogram human myoblasts into brown-like adipocytes and to establish a new cell model for browning research. Methods To enhance the PPARγ signaling, M3, the transactivation domain of MyoD, was fused to PPARγ. PPARγ and M3-PPARγ-lentiviral vectors were used to convert human myoblasts into adipocytes. Brown adipocyte markers of the reprogrammed adipocytes were assessed by qPCR and protein analyses. White adipocytes differentiated from subcutaneous stromal vascular cells and perithyroid brown fat tissues were used as references. Results In transient transfections, M3-PPARγ had a stronger constitutive activity than PPARγ by reporter assay. Although the transduction of either PPARγ or M3-PPARγ induced adipogenesis in myoblasts, M3-PPARγ drastically induced the brown adipocyte markers of UCP1, CIDEA, and PRDM16 by 1,050, 2.4, and 5.0 fold, respectively and increased mitochondria contents by 4 fold, compared to PPARγ. Conclusions Super-activation of PPARγ can effectively convert human myoblasts into brown-like adipocytes and a new approach to derive brown-like adipocytes.
UR - http://www.scopus.com/inward/record.url?scp=84928564547&partnerID=8YFLogxK
U2 - 10.1002/oby.21062
DO - 10.1002/oby.21062
M3 - Article
C2 - 25919922
AN - SCOPUS:84928564547
SN - 1930-7381
VL - 23
SP - 1014
EP - 1021
JO - Obesity
JF - Obesity
IS - 5
ER -