The effects of muscle contraction and recombinant osteocalcin on insulin sensitivity ex vivo
详细信息    查看全文
  • 作者:I. Levinger ; X. Lin ; X. Zhang ; T. C. Brennan-Speranza…
  • 关键词:Bone ; muscle interactions ; Glucose uptake ; Insulin sensitivity ; Muscle contraction ; Osteocalcin
  • 刊名:Osteoporosis International
  • 出版年:2016
  • 出版时间:February 2016
  • 年:2016
  • 卷:27
  • 期:2
  • 页码:653-663
  • 全文大小:1,171 KB
  • 参考文献:1.Colberg SR, Albright AL, Blissmer BJ, Braun B, Chasan-Taber L, Fernhall B, Regensteiner JG, Rubin RR, Sigal RJ (2010) Exercise and type 2 diabetes: American College of Sports Medicine and the American Diabetes Association: joint position statement. Exercise and type 2 diabetes. Med Sci Sports Exerc 42:2282–2303CrossRef PubMed
    2.Holloszy JO (2005) Exercise-induced increase in muscle insulin sensitivity. J Appl Physiol 99:338–343CrossRef PubMed
    3.Funai K, Schweitzer GG, Sharma N, Kanzaki M, Cartee GD (2009) Increased AS160 phosphorylation, but not TBC1D1 phosphorylation, with increased postexercise insulin sensitivity in rat skeletal muscle. Am J Physiol Endocrinol Metab 297:E242–251PubMedCentral CrossRef PubMed
    4.Lee NK, Sowa H, Hinoi E et al (2007) Endocrine regulation of energy metabolism by the skeleton. Cell 130:456–469PubMedCentral CrossRef PubMed
    5.Ducy P (2011) The role of osteocalcin in the endocrine cross-talk between bone remodelling and energy metabolism. Diabetologia 54:1291–1297CrossRef PubMed
    6.Karsenty G, Ferron M (2012) The contribution of bone to whole-organism physiology. Nature 481:314–320CrossRef PubMed
    7.Pittas AG, Harris SS, Eliades M, Stark P, Dawson-Hughes B (2009) Association between serum osteocalcin and markers of metabolic phenotype. J Clin Endocrinol Metab 94:827–832PubMedCentral CrossRef PubMed
    8.Rached MT, Kode A, Silva BC et al (2010) FoxO1 expression in osteoblasts regulates glucose homeostasis through regulation of osteocalcin in mice. J Clin Invest 120:357–368PubMedCentral CrossRef PubMed
    9.Ferron M, Wei J, Yoshizawa T, Del Fattore A, DePinho RA, Teti A, Ducy P, Karsenty G (2010) Insulin signaling in osteoblasts integrates bone remodeling and energy metabolism. Cell 142:296–308PubMedCentral CrossRef PubMed
    10.Oury F, Sumara G, Sumara O et al (2011) Endocrine regulation of male fertility by the skeleton. Cell 144:796–809PubMedCentral CrossRef PubMed
    11.Levinger I, Zebaze R, Jerums G, Hare DL, Selig S, Seeman E (2011) The effect of acute exercise on undercarboxylated osteocalcin in obese men. Osteoporos Int 22:1621–1626CrossRef PubMed
    12.Levinger I, Jerums G, Stepto NK et al (2014) The effect of acute exercise on undercarboxylated osteocalcin and insulin sensitivity in obese men. J Bone Miner Res 29:2571–2576
    13.Wan M, Birnbaum Morris J (2011) Of mice and men: not ExAKTly the same? Cell Metab 14:722–723CrossRef PubMed
    14.Cartee GD, Wojtaszewski JF (2007) Role of Akt substrate of 160 kDa in insulin-stimulated and contraction-stimulated glucose transport. Appl Physiol Nutr Metab 32:557–566CrossRef PubMed
    15.Krook A, Wallberg-Henriksson H, Zierath JR (2004) Sending the signal: molecular mechanisms regulating glucose uptake. Med Sci Sports Exerc 36:1212–1217CrossRef PubMed
    16.Ferron M, Hinoi E, Karsenty G, Ducy P (2008) Osteocalcin differentially regulates beta cell and adipocyte gene expression and affects the development of metabolic diseases in wild-type mice. Proc Natl Acad Sci U S A 105:5266–5270PubMedCentral CrossRef PubMed
    17.Funai K, Schweitzer GG, Castorena CM, Kanzaki M, Cartee GD (2010) In vivo exercise followed by in vitro contraction additively elevates subsequent insulin-stimulated glucose transport by rat skeletal muscle. Am J Physiol Endocrinol Metab 298:E999–1010PubMedCentral CrossRef PubMed
    18.Merry TL, Steinberg GR, Lynch GS, McConell GK (2010) Skeletal muscle glucose uptake during contraction is regulated by nitric oxide and ROS independently of AMPK. Am J Physiol Endocrinol Metab 298:E577–585CrossRef PubMed
    19.Ferron M, McKee MD, Levine RL, Ducy P, Karsenty G (2012) Intermittent injections of osteocalcin improve glucose metabolism and prevent type 2 diabetes in mice. Bone 50:568–575PubMedCentral CrossRef PubMed
    20.Ferron M, Hinoi E, Karsenty G, Ducy P (2008) Osteocalcin differentially regulates β cell and adipocyte gene expression and affects the development of metabolic diseases in wild-type mice. Proc Natl Acad Sci 105:5266–5270PubMedCentral CrossRef PubMed
    21.Zhang X, Xu A, Chung SK, Cresser JH, Sweeney G, Wong RL, Lin A, Lam KS (2011) Selective inactivation of c-Jun NH2-terminal kinase in adipose tissue protects against diet-induced obesity and improves insulin sensitivity in both liver and skeletal muscle in mice. Diabetes 60:486–495PubMedCentral CrossRef PubMed
    22.Mollica JP, Oakhill JS, Lamb GD, Murphy RM (2009) Are genuine changes in protein expression being overlooked? Reassessing Western blotting. Anal Biochem 386:270–275CrossRef PubMed
    23.Richter EA, Derave W, Wojtaszewski JF (2001) Glucose, exercise and insulin: emerging concepts. J Physiol 535:313–322PubMedCentral CrossRef PubMed
    24.Brennan-Speranza TC, Henneicke H, Gasparini SJ et al (2012) Osteoblasts mediate the adverse effects of glucocorticoids on fuel metabolism. J Clin Invest 122:4172–4189PubMedCentral CrossRef PubMed
    25.Kramer HF, Witczak CA, Fujii N, Jessen N, Taylor EB, Arnolds DE, Sakamoto K, Hirshman MF, Goodyear LJ (2006) Distinct signals regulate AS160 phosphorylation in response to insulin, AICAR, and contraction in mouse skeletal muscle. Diabetes 55:2067–2076CrossRef PubMed
    26.Kramer HF, Witczak CA, Taylor EB, Fujii N, Hirshman MF, Goodyear LJ (2006) AS160 regulates insulin- and contraction-stimulated glucose uptake in mouse skeletal muscle. J Biol Chem 281:31478–31485CrossRef PubMed
    27.Treebak JT, Pehmoller C, Kristensen JM, Kjobsted R, Birk JB, Schjerling P, Richter EA, Goodyear LJ, Wojtaszewski JF (2014) Acute exercise and physiological insulin induce distinct phosphorylation signatures on TBC1D1 and TBC1D4 proteins in human skeletal muscle. J Physiol 592:351–375PubMedCentral CrossRef PubMed
    28.Oury F, Ferron M, Huizhen W et al (2013) Osteocalcin regulates murine and human fertility through a pancreas-bone-testis axis. J Clin Invest 123:2421–2433PubMedCentral CrossRef PubMed
    29.Pi M, Quarles LD (2012) Multiligand specificity and wide tissue expression of GPRC6A reveals new endocrine networks. Endocrinology 153:2062–2069PubMedCentral CrossRef PubMed
    30.Wellendorph P, Brauner-Osborne H (2004) Molecular cloning, expression, and sequence analysis of GPRC6A, a novel family C G-protein-coupled receptor. Gene 335:37–46CrossRef PubMed
    31.Pi M, Chen L, Huang MZ et al (2008) GPRC6A null mice exhibit osteopenia, feminization and metabolic syndrome. PLoS ONE 3:e3858PubMedCentral CrossRef PubMed
    32.Hill HS, Grams J, Walton RG, Liu J, Moellering DR, Garvey WT (2014) Carboxylated and uncarboxylated forms of osteocalcin directly modulate the glucose transport system and inflammation in adipocytes. Horm Metab Res 46:341–347
    33.Wojtaszewski JF, Hansen BF, Gade KB, Markuns JF, Goodyear LJ, Richter EA (2000) Insulin signaling and insulin sensitivity after exercise in human skeletal muscle. Diabetes 49:325–331CrossRef PubMed
  • 作者单位:I. Levinger (1)
    X. Lin (1)
    X. Zhang (1)
    T. C. Brennan-Speranza (2)
    B. Volpato (2)
    A. Hayes (1) (3)
    G. Jerums (4)
    E. Seeman (4)
    G. McConell (1) (3)

    1. Clinical Exercise Science Research Program, Institute of Sport, Exercise and Active Living (ISEAL) College of Sport and Exercise Science, Victoria University, PO Box 14428, Melbourne, VIC, 8001, Australia
    2. Department of Physiology and Bosch Institute for Medical Research, University of Sydney, Sydney, Australia
    3. Centre for Chronic Disease, College of Health and Biomedicine, Victoria University, Melbourne, Australia
    4. Department of Endocrinology, Austin Health, University of Melbourne, Melbourne, Australia
  • 刊物类别:Medicine
  • 刊物主题:Medicine & Public Health
    Orthopedics
    Gynecology
    Endocrinology
    Rheumatology
  • 出版者:Springer London
  • ISSN:1433-2965
文摘
Summary We tested whether GPRC6A, the putative receptor of undercarboxylated osteocalcin (ucOC), is present in mouse muscle and whether ucOC increases insulin sensitivity following ex vivo muscle contraction. GPPRC6A is expressed in mouse muscle and in the mouse myotubes from a cell line. ucOC potentiated the effect of ex vivo contraction on insulin sensitivity.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700