연구논문

세부과제번호 2013M3A9D5072550 단계 2단계 1차년도
세부과제명 마우스 표현형서비스 구축 및 대사 운동 표현형 분석 공동 유/무 N
SCI여부 Y 게재년월 2017-01
논문제목 Metabolic heterogeneity of activated beige/brite adipocytes in inguinal adipose tissue.
총저자명 Yun-Hee Lee, Sang-Nam Kim, Hyun-Jung Kwon, James G Granneman
학술지명 Sci Rep 게재권(호) 7()
저널구분 - 페이지수 39794
참여연구원 - 연구책임자 성제경
과제기여도 30 PMID 28045125
사사기관수 - IF (년도) 4.259
제1저자 Yun-Hee Lee 교신저자 James G Granneman
공동저자 Sang-Nam Kim, Hyun-Jung Kwon
초록
Sustained β3 adrenergic receptor (ADRB3) activation simultaneously upregulates fatty acid synthesis and oxidation in mouse brown, beige, and white adipose tissues; however, the cellular basis of this dual regulation is not known. Treatment of mice with the ADRB3 agonist CL316,243 (CL) increased expression of fatty acid synthase (FASN) and medium chain acyl-CoA dehydrogenase (MCAD) protein within the same cells in classic brown and white adipose tissues. Surprisingly, in inguinal adipose tissue, CL-upregulated FASN and MCAD in distinct cell populations: high MCAD expression occurred in multilocular adipocytes that co-expressed UCP1+, whereas high FASN expression occurred in paucilocular adipocytes lacking detectable UCP1. Genetic tracing with UCP1-cre, however, indicated nearly half of adipocytes with a history of UCP1 expression expressed high levels of FASN without current expression of UCP1. Global transcriptomic analysis of FACS-isolated adipocytes confirmed the presence of distinct anabolic and catabolic phenotypes, and identified differential expression of transcriptional pathways known to regulate lipid synthesis and oxidation. Surprisingly, paternally-expressed genes of the non-classical gene imprinted network were strikingly enriched in anabolic phenotypes, suggesting possible involvement in maintaining the balance of metabolic phenotypes. The results indicate that metabolic heterogeneity is a distinct property of activated beige/brite adipocytes that might be under epigenetic control.
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