연구논문

세부과제번호 2014M3A9D5A01073886 단계 1단계 2차년도
세부과제명 유전자 변형 마우스 2차 대사표현형(근육) 분석 기반 구축 및 대사표현형 분석을 통한 생체유전자 기능 규명 연구 공동 유/무 -
SCI여부 Y 게재년월 2015-01
논문제목 Insulin resistance and white adipose tissue inflammation are uncoupled in energetically challenged Fsp27-deficient mice.
총저자명 Linkang ZhouShi-Young ParkLi XuXiayu XiaJing YeLu SuKyeong-Hoon JeongJang Ho HurHyunhee OhYoshikazu TamoriCristina M ZingarettiSaverio CintiJesús ArgenteMiao YuLizhen WuShenghong JuFeifei GuanHongyuan YangCheol Soo ChoiDavid B SavagePeng Li
학술지명 Nature Communications 게재권(호) 6()
저널구분 - 페이지수 6:5949(1~14)
참여연구원 최철수 연구책임자 최철수
과제기여도 95 PMID 25565658
사사기관수 - IF (년도) 11.47
제1저자 Linkang Zhou, Shi-Young Park, Li Xu, Xiayu Xia, Jing Ye, Lu Su, Kyeong-Hoon Jeong, Jang Ho Hur, Hyunhee Oh, Yoshikazu Tamori, Cristina M. Zingaretti, Saverio Cinti, Jesús Argente, Miao Yu, Lizhen Wu, Shenghong Ju, Feifei Guan, 교신저자 최철수, David B.Savage, Peng Li
공동저자 -
초록
Fsp27 is a lipid droplet-associated protein almost exclusively expressed in adipocytes where it facilitates unilocular lipid droplet formation. In mice, Fsp27 deficiency is associated with increased basal lipolysis, 'browning' of white fat and a healthy metabolic profile, whereas a patient with congenital CIDEC deficiency manifested an adverse lipodystrophic phenotype. Here we reconcile these data by showing that exposing Fsp27-null mice to a substantial energetic stress by crossing them with ob/ob mice or BATless mice, or feeding them a high-fat diet, results in hepatic steatosis and insulin resistance. We also observe a striking reduction in adipose inflammation and increase in adiponectin levels in all three models. This appears to reflect reduced activation of the inflammasome and less adipocyte death. These findings highlight the importance of Fsp27 in facilitating optimal energy storage in adipocytes and represent a rare example where adipose inflammation and hepatic insulin resistance are disassociated.
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