China Animal Husbandry & Veterinary Medicine ›› 2015, Vol. 42 ›› Issue (10): 2636-2643.doi: 10.16431/j.cnki.1671-7236.2015.10.019
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ZHOU Zhao-hong1,2, CHEN Dai-wen1, TIAN Gang1, XIAO Zhu-hong2, YU Bing1
Received:
2015-03-06
Online:
2015-10-20
Published:
2015-10-23
CLC Number:
ZHOU Zhao-hong, CHEN Dai-wen, TIAN Gang, XIAO Zhu-hong, YU Bing. Research Progress on the Relationship between Peroxisome Proliferators-activated Receptor-γ Coactivator-1α and Muscle Fiber-type Switching,and its Expression Regulation[J]. China Animal Husbandry & Veterinary Medicine, 2015, 42(10): 2636-2643.
[1] Puigserver P,Wu Z,Park C,et al.A cold-inducible coactivator of nuclear receptors linked to adaptive thermogenesis[J].Cell,1998,92(6):829-839. [2] Lin J,Wu H,Tarr P,et al.Transcriptional co-activator PGC-1α drives the formation of slow-twitch muscle fibre[J].Nature,2002,418:797-801. [3] Akimoto T,Pohnert S C,Li P,et al.Exercise stimulates PGC-1α transcription in skeletal muscle through activation of the p38 MAPK pathway[J].J Biol Chem,2005,280:19587-19593. [4] Jager S,Handschin C,St-pierre J,et al.AMP-activated protein kinase (AMPK) action in skeletal muscle via direct phosphorylation of PGC-1 alpha[J].Proc Natl Acad Sci USA,2007,104:12017-12022. [5] Lettieri B D,Baldelli S,Paqliei B,et al.Caloric restriction and the nutrient-sensing PGC-1α in mitochondrial homeostasis:New perspectives in neurodegeneration[J].Int J Cell Biol,2012,2012:759583. [6] Larrouy D,Vidal H,Andreelli F,et al.Cloning and mRNA tissue distribution of human PPARγ coactivator-1[J].Int J Obesity,1999,23(12):1327-1332. [7] Jacobs K,Rohrer G,Van P M,et al.Procine PPARGC1A (peroxisome proliferative activated receptor gamma coactivator 1A):Coding sequence,genomic organization,polymorphisms and mapping[J]. Cytogenet Genpme Res,2006,112(1-2):106-113. [8] 严雪瑜,敖秋栀,严小东,等.广西巴马小型猪PGC-1α基因克隆与组织表达分析[J].中国实验动物学报,2014,22(5):27-31. [9] 文旭辉.猪PGC-1α、线粒体相关基因组织表达及Leptin对PGC-1α、UCPs mRNA表达的影响[D].杨凌:西北农林科技大学,2007. [10] Fernandez-marcos P,Auwerx J.Regulation of PGC-1α,a nodal regulator of mitochondrial biogenesis[J]. Am J Clin Nutr,2011,93(Suppl):884S-890S. [11] Brooke M H,Kaiser K K.Muscle fiber types:How many and what kind[J].Archives of Neurology,1970,23(4):369-379. [12] Weiss A,Mcdonough D,Wertman B,et al.Organization of human and mouse skeletal myosin heavy chain gene clusters is highly conserved[J].Proc Natl Acad Sci USA,1999,96(6):2958-2963. [13] Ansved T,Larsson L.Effects of ageing on enzyme histochemical,morphometrical and contractile properities of the soleus muscle in the rat[J].J Neurol Sci,1989,93(1):105-124. [14] Lefaucheur L.A second look into fibre typing-relation to meat quality[J]. Meat Sci,2010,84 (2):257-270. [15] Wu Z,Puigserver P,Andersson U,et al.Mechanisms controlling mitochondrial biogenesis and respiration though the thermogenic coactivator PGC-1[J]. Cell,1999,98 (1):115-124. [16] Handschin C,Chin S,Li P,et al.Skeletal muscle fiber-type switching,exercise intolerance,and myopathy in PGC-1α muscle-specific knock-out animals[J].J Biol Chem,2007,282(41):30014-30021. [17] Yamaguchi T,Suzeki T,Arai H,et al.Continuous mild heat stress induces differentiation of mammalian myoblasts,shifting fiber type from fast to slow[J].Am J Physiol-cell Ph,2010,298(1):C140-C148. [18] Zechner C,Lai L,Zechner J,et al.Total skeletal muscle PGC-1 deficiency uncouples mitochondrial derangements from fiber type determination and insulin sensitivity[J].Cell Metab,2010,12:633-642. [19] Nigel J B.Molecules in focus myocyte enhancer factor 2 (MEF2)[J].Int J Biochem Cell B,1997,29(12):1467-1470. [20] Wu H,Naya F J,Mckinsey T,et al.MEF2:Responds to multiple calcium-regulated signals in the control of skeletal muscle fiber type[J]. Embo J,2000,19(9):1963-1973. [21] Rasbach K A,Gupta R K,Ruas J L,et al.PGC-1α regulates a HIF2α-dependent switch in skeletal muscle fiber types[J].Proc Natl Acad Sci USA,2010,107(50):21866-21871. [22] Luquet S,Lopez-soriano J,Holst D,et al.Peroxisome proliferator-activated receptor delta controls muscle development and oxidative capability[J].FASEB J,2003,17(15):2299-2301. [23] Wang Y X,Zhang C L,Yu R,et al.Regulation of muscle fiber type and running endurance by PPAR delta[J].PLoS Biol,2004,2(10):1532-1539. [24] Schuler M,Ali F,Chambon C,et al.PGC-1α expression is controlled in skeletal muscles by PPARβ,whose ablation results in fiber-type switching,obesity,and type 2 diabetes[J].Cell Metab,2006,4(5):407-414. [25] Handschin C,Rhee J,Jiandie L,et al.An autoregulatory loop controls peroxisome proliferator-activated receptor gamma coactivator1alpha expression in muscle[J].Proc Natl Acad Sci USA,2003,100:7111-7116. [26] Akimoto T,Sorg B S.Real-time imaging of peroxisome proliferatoractivated receptor-gamma coactivator-1 alpha promoter activity in skeletal muscles of living mice[J].Am J Physiol-cell Ph,2004,287:C790-C796. [27] Puigserver P,Rhee J,Lin J,et al.Cytokine stimulation of energy expenditure through p38MAP kinase activation of PPAR gamma coactivator-1[J]. Mol Cell,2001,8(5):971-982. [28] Irrcher I,Adhihetty P J,Sheehan T,et al.PPARγ coactivator-1α expression during thyroid hormone-and contractile activity-induced mitochondrial adaptations[J].Am J Physiol-cell Ph,2003,284:C1669-C1677. [29] Fan M,Rhee J,St-Pierre J,et al.Suppression of mitochondrial respiration through recruitment of p160 myb binding protein to PGC-1α:Modulation by p38 MAPK[J].Genes & Dev,2004,18:278-289. [30] Weitzel J M,Iwen K A.Coordination of mitochondrial biogenesis by thyroid hormone[J]. Mol Cell Endocrinol,2011,342(1-2):1-7. [31] Goldenthal M J,Weiss H R,Martin-Garcia J.Bioenergetic remodeling of heart mitochondria by thyroid hormone[J]. Mol Cell Biochem,2004,265(1-2):97-106. [32] Jorgensen S B,Wojtaszewski J F,Viollef B,et al.Effects of alpha-AMPK knockout on exercise-induced gene activation in mouse skeletal muscle[J].FASEB J,2005,19:1146-1148. [33] Zhao X,Terkeltaub R,Lotz M,et al.AMPK-SIRT1-PGC-1α signaling regulates mitochondrial function in human articular chondrocytes[J]. Steoarthritis and Cartilage,2013,21:S128. [34] Ling C,Poulsen P,Carlsson E,et al.Multiple environmental and genetic factors influence skeletal muscle PGC-1 alpha and PGC-1 beta gene expression in twins[J].J Clin Invest,2004,114:1518-1526. [35] Daitoku H,Yamagata K,Matsuzaki H,et al.Regulation of PGC-1 promoter activity by protein kinase B and the forkhead transcription factor FKHR[J].Diabetes,2003,52(3):642-649. [36] Herzig S,Long F,Jhala U S,et al.CREB regulates hepatic gluconeogenesis through the coactivator PGC-1[J].Nature,2001,413(6852):179-183. [37] Cao W,Daniel K W,Robidoux J,et al.p38 mitogen-activated protein kinase is the central regulator of cyclic AMP-dependent transcription of the brown fat uncoupling protein 1 gene[J].Mol Cell Biol,2004,24:3057-3067. [38] Borniquel S,Valle I,Cadenas S,et al.Nitric oxide regulates mitochondrial oxidative stress protection via the transcriptional coactivator PGC-1 alpha[J].FASEB J,2006,20:1889-1891. [39] Barres R,Osler M E,Yan J,et al.Non-CpG methylation of the PGC-1 alpha promoter through DNMT3B controls mitochondrial density[J].Cell Metab,2009,10:189-198. [40] Li X,Monks B,Ge Q,et al.AKT/PKB regulates hepatic metabolism by directly inhibiting PGC-1 alpha transcription coactivator[J].Nature,2007,447:1012-1016. [40] Rodgers J T,Haas W,Gygi S P,et al.Cdc2-like kinase 2 is an insulin-regulated suppressor of hepatic gluconeogenesis[J].Cell Metab,2010,11:23-34. [42] Sano M,Tokudome S,Shimize N,et al.Intramolecular control of protein stability,subnuclear compartmentalization,and coactivator function of peroxisome proliferator-activated receptor gamma coactivator 1 alpha[J].J Biol Chem,2007,282:25970-25980. [43] Anderson R M,Barger J L,Edwards M G,et al.Dynamic regulation of PGC-1 alpha localization and turnover implicates mitochondrial adaptation in calorie restriction and the stress response[J].Aging Cell,2008,7:101-111. [44] Chang J S,Huypens P,Zhang Y,et al.Regulation of NT-PGC-1α subcellular localization and function by PKA-dependent modulation of nuclear export by CRM1[J].J Biol Chem,2010,285:18039-18050. [45] Lerin C,Rodgers J T,Kalume D E,et al.GCN5 acetyltransferase complex controls glucose metabolism through transcriptional repression of PGC-1 alpha[J].Cell Metab,2006,3:429-438. [46] Wellen K E,Hatzivassiliou G,Sachdeva U M,et al.ATP-citrate lyase links cellular metabolism to histone acetylation[J].Science,2009,324:1076-1080. [47] Olson B L,Hock M B,Sachdeva U M,et al.SCFCdc4 acts antagonistically to the PGC-1 alpha transcriptional coactivator by targeting it for ubiquitin-mediated proteolysis[J].Genes Dev,2008,22:252-264. [48] Housley M P,Udeshi N D,Ekholm-reed S,et al.A PGC-1alpha-O-GlcNAc transferase complex regulates FoxO transcription factor activity in response to glucose[J].J Biol Chem,2009,284:5148-5157. [49] Lo'pez-Lluch G,Hunt N,Jones B,et al.Calorie restriction induces mitochondrial biogenesis and bioenergetics efficiency[J].Proc Natl Acad Sci USA,2006,103(6):1768-1773. [50] Anthony E C,Stacy C,Leonie K H,et al.Calorie restriction increases muscle mitochondrial biogenesis in healthy humans[J].PLoS One,2007,4(3):485-494. [51] Hancock C R,Han D H,Higashida K,et al.Dose calorie restriction induce mitochondrial biogenesis? A reevaluation[J].FASEB J,2011,25(2):785-791. [52] Sparks L M,Xie H,Koza R A,et al.A high-fat diet coordinately downregulates genes required for mitochondrial oxidative phosphorylation in skeletal muscle[J].Diabetes,2005,54:1926-1933. [53] Hancock,Han D H,Chen M,et al.High-fat diets cause insulin resistance despite an increase in muscle mitochondria[J].Proc Natl Acad Sci USA,2008,105(22):7815-7820. [54] 马慧娟.高脂饮食诱导的胰岛素抵抗大鼠骨骼肌线粒体相关蛋白PGC-1α的表达及调控[D].石家庄:河北医科大学,2010. [55] 边德志,赵青松,随 萍,等.高脂饮食对大鼠肝脏PGC-1α、TRB3、Akt的影响[J].中国现代医生,2011,49(35):14-16. [56] 管石侠.高脂膳食诱导大鼠NAFLD发病过程中PGC-1α表达及其与IR相关性研究[D].合肥:安徽医科大学,2012. [57] Nisoli E,Clementi E,Aolucci C,et al.Mitochondrial biogenesis in mammals:The role of endogenous nitric oxide[J].Science,2003,299:896-899. [58] 刘晓然,丁 虎,孙卫东,等.NO-cGMP 参与大鼠骨骼肌线粒体生物合成:耐力训练和L-精氨酸补充的作用[J].中国运动医学杂志,2007,26(6):663-668. [59] 肖 娟,肖颖彬,陈 林,等.一氧化氮对心肌细胞线粒体生物合成相关基因表达的影响[J].现代生物医学进展,2008,8(8):1430-1432. [60] Lira V A,Brown D L,Lira A,et al.Nitric oxide and AMPK cooperatively regulate PGC-1α in skeletal muscle cells[J]. The Journal of Physiology,2010,588(18):3551-3566. [61] Hill K M,Stathis C G,Grinfeld E,et al.Co-ingestion of carbohydrate and whey protein isolates enhance PGC-1α mRNA expression:A randomized,single blind,cross over study[J].J Int Soc Sport Nutr,2013,10:1-8. [62] Branvold D J,Allred D R,Beckstead D J,et al.Thyroid hormone effects on LKB1,MO25,phospho-AMPK,phospho-CREB,and PGC-1 alpha in rat muscle[J].J Appl Physiol,2008,105:1218-1227. [63] Lagouge M,Argmann C,Gerhart-hines Z,et al.Resveratrol improves mitochondrial function and protects against metabolic disease by activating SIRT1 and PGC-1α[J].Cell,2006,127:1109-1122. |
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