Autophagic Degradation of Mitochondria in White Adipose Tissue Differentiation

被引:56
作者
Goldman, Scott J. [1 ]
Zhang, Yong [1 ]
Jin, Shengkan [1 ]
机构
[1] Univ Med & Dent New Jersey, Robert Wood Johnson Med Sch, Dept Pharmacol, Piscataway, NJ 08854 USA
关键词
ACTIVATED RECEPTOR-GAMMA; RETICULOCYTE MATURATION; INSULIN-RESISTANCE; ADIPOCYTE DIFFERENTIATION; CELLULAR PLASTICITY; METABOLIC SYNDROME; DROPLET PROTEINS; LIPID DROPLETS; ADIPOGENESIS; OBESITY;
D O I
10.1089/ars.2010.3777
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Recent work has revealed that autophagy plays a significant role in the process of white adipocyte differentiation. In both in vitro and in vivo model systems, autophagy inactivation by targeted deletion of essential autophagy genes results in alterations in white adipocyte structure. In both models, postdifferentiation cells exhibit atypical morphology, with many small lipid droplets and large numbers of mitochondria, rather than the single large lipid droplet and relatively few mitochondria observed in normal white adipocytes. The role of autophagy as the primary means of the degradation of mitochondria has long been studied, and it is likely that a deficiency in the degradation of mitochondria contributes to the unusual phenotypes observed in mice with autophagy-deficient adipose tissue, including reduced adiposity, resistance to diet-induced obesity, and increased insulin sensitivity. What is not yet known is whether the process of mitochondria-specific autophagy, often referred to as "mitophagy,'' is specifically induced during adipogenesis or if a general increase in the nonspecific autophagic degradation of mitochondria plays a role in normal adipose differentiation. Despite remaining questions, these findings not only establish the critical role of autophagy in white adipose tissue development, but also suggest that the manipulation of autophagy in adipose tissue may provide novel therapeutic opportunities for metabolic diseases. Antioxid. Redox Signal. 14, 1971-1978.
引用
收藏
页码:1971 / 1978
页数:8
相关论文
共 56 条
[31]   Endogenous MHC class II processing of a viral nuclear antigen after autophagy [J].
Paludan, C ;
Schmid, D ;
Landthaler, M ;
Vockerodt, M ;
Kube, D ;
Tuschl, T ;
Münz, C .
SCIENCE, 2005, 307 (5709) :593-596
[32]   Before They Were Fat: Adipocyte Progenitors [J].
Park, Kye Won ;
Halperin, Daniel S. ;
Tontonoz, Peter .
CELL METABOLISM, 2008, 8 (06) :454-457
[33]  
Pouteau E, 2009, METHODS MOL BIOL, V579, P337, DOI 10.1007/978-1-60761-322-0_17
[34]   Promotion of tumorigenesis by heterozygous disruption of the beclin 1 autophagy gene [J].
Qu, XP ;
Yu, J ;
Bhagat, G ;
Furuya, N ;
Hibshoosh, H ;
Troxel, A ;
Rosen, J ;
Eskelinen, EL ;
Mizushima, N ;
Ohsumi, Y ;
Cattoretti, G ;
Levine, B .
JOURNAL OF CLINICAL INVESTIGATION, 2003, 112 (12) :1809-1820
[35]  
Rosen ED, 2000, GENE DEV, V14, P1293
[36]   Molecular regulation of adipogenesis [J].
Rosen, ED ;
Spiegelman, BM .
ANNUAL REVIEW OF CELL AND DEVELOPMENTAL BIOLOGY, 2000, 16 :145-171
[37]   Adipocytes as regulators of energy balance and glucose homeostasis [J].
Rosen, Evan D. ;
Spiegelman, Bruce M. .
NATURE, 2006, 444 (7121) :847-853
[38]   Adipocyte differentiation from the inside out [J].
Rosen, Evan D. ;
MacDougald, Ormond A. .
NATURE REVIEWS MOLECULAR CELL BIOLOGY, 2006, 7 (12) :885-896
[39]   Autophagy and its possible roles in nervous system diseases, damage and repair [J].
Rubinszfein, David C. ;
DiFiglia, Marion ;
Heintz, Nathaniel ;
Nixon, Ralph A. ;
Qin, Zheng-Hong ;
Ravikumar, Brinda ;
Stefanis, Leonidas ;
Tolkovsy, Aviva .
AUTOPHAGY, 2005, 1 (01) :11-22
[40]   Essential role for Nix in autophagic maturation of erythroid cells [J].
Sandoval, Hector ;
Thiagarajan, Perumal ;
Dasgupta, Swapan K. ;
Schumacher, Armin ;
Prchal, Josef T. ;
Chen, Min ;
Wang, Jin .
NATURE, 2008, 454 (7201) :232-U66