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Volume 271, Number 18, Issue of May 3, 1996 pp. 10697-10703
©1996 by The American Society for Biochemistry and Molecular Biology, Inc.
AdipoQ Is a Novel Adipose-specific Gene Dysregulated in Obesity

(Received for publication, August 22, 1995; and in revised form, February 22, 1996)

Erding Hu Peng Liang Bruce M. Spiegelman

Adipose differentiation is accompanied by changes in cellular morphology, a dramatic accumulation of intracellular lipid and activation of a specific program of gene expression. Using an mRNA differential display technique, we have isolated a novel adipose cDNA, termed adipoQ. The adipoQ cDNA encodes a polypeptide of 247 amino acids with a secretory signal sequence at the amino terminus, a collagenous region (Gly-X-Y repeats), and a globular domain. The globular domain of adipoQ shares significant homology with subunits of complement factor C1q, collagen alpha1(X), and the brain-specific factor cerebellin. The expression of adipoQ is highly specific to adipose tissue in both mouse and rat. Expression of adipoQ is observed exclusively in mature fat cells as the stromal-vascular fraction of fat tissue does not contain adipoQ mRNA. In cultured 3T3-F442A and 3T3-L1 preadipocytes, hormone-induced differentiation dramatically increases the level of expression for adipoQ. Furthermore, the expression of adipoQ mRNA is significantly reduced in the adipose tissues from obese mice and humans. Whereas the biological function of this polypeptide is presently unknown, the tissue-specific expression of a putative secreted protein suggests that this factor may function as a novel signaling molecule for adipose tissue.




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Am. J. Physiol. Endocrinol. Metab.Home page
V. B. O'Leary, A. E. Jorett, C. M. Marchetti, F. Gonzalez, S. A. Phillips, T. P. Ciaraldi, and J. P. Kirwan
Enhanced adiponectin multimer ratio and skeletal muscle adiponectin receptor expression following exercise training and diet in older insulin-resistant adults
Am J Physiol Endocrinol Metab, July 1, 2007; 293(1): E421 - E427.
[Abstract] [Full Text] [PDF]


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Genes Dev.Home page
M. Qatanani and M. A. Lazar
Mechanisms of obesity-associated insulin resistance: many choices on the menu
Genes & Dev., June 15, 2007; 21(12): 1443 - 1455.
[Abstract] [Full Text] [PDF]


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Epidemiol RevHome page
S. Musaad and E. N. Haynes
Biomarkers of Obesity and Subsequent Cardiovascular Events
Epidemiol. Rev., May 10, 2007; (2007) mxm005v1.
[Abstract] [Full Text] [PDF]


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EndocrinologyHome page
R. R. Almon, D. C. DuBois, and W. J. Jusko
A Microarray Analysis of the Temporal Response of Liver to Methylprednisolone: A Comparative Analysis of Two Dosing Regimens
Endocrinology, May 1, 2007; 148(5): 2209 - 2225.
[Abstract] [Full Text] [PDF]


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DiabetesHome page
C. Menzaghi, V. Trischitta, and A. Doria
Genetic Influences of Adiponectin on Insulin Resistance, Type 2 Diabetes, and Cardiovascular Disease
Diabetes, May 1, 2007; 56(5): 1198 - 1209.
[Abstract] [Full Text] [PDF]


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Am. J. Physiol. Endocrinol. Metab.Home page
W. Li, J. Tonelli, P. Kishore, R. Owen, E. Goodman, P. E. Scherer, and M. Hawkins
Insulin-sensitizing effects of thiazolidinediones are not linked to adiponectin receptor expression in human fat or muscle
Am J Physiol Endocrinol Metab, May 1, 2007; 292(5): E1301 - E1307.
[Abstract] [Full Text] [PDF]


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J EndocrinolHome page
C.-J. Li, H.-W. Sun, F.-L. Zhu, L. Chen, Y.-Y. Rong, Y. Zhang, and M. Zhang
Local adiponectin treatment reduces atherosclerotic plaque size in rabbits
J. Endocrinol., April 1, 2007; 193(1): 137 - 145.
[Abstract] [Full Text] [PDF]


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DiabetesHome page
E. Chevillotte, M. Giralt, B. Miroux, D. Ricquier, and F. Villarroya
Uncoupling Protein-2 Controls Adiponectin Gene Expression in Adipose Tissue Through the Modulation of Reactive Oxygen Species Production
Diabetes, April 1, 2007; 56(4): 1042 - 1050.
[Abstract] [Full Text] [PDF]


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Am. J. Physiol. Endocrinol. Metab.Home page
J. W. Bullen Jr., S. Bluher, T. Kelesidis, and C. S. Mantzoros
Regulation of adiponectin and its receptors in response to development of diet-induced obesity in mice
Am J Physiol Endocrinol Metab, April 1, 2007; 292(4): E1079 - E1086.
[Abstract] [Full Text] [PDF]


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Am. J. Physiol. Endocrinol. Metab.Home page
S. Y. Cho, P. J. Park, H. J. Shin, Y.-K. Kim, D. W. Shin, E. S. Shin, H. H. Lee, B. G. Lee, J.-H. Baik, and T. R. Lee
(-)-Catechin suppresses expression of Kruppel-like factor 7 and increases expression and secretion of adiponectin protein in 3T3-L1 cells
Am J Physiol Endocrinol Metab, April 1, 2007; 292(4): E1166 - E1172.
[Abstract] [Full Text] [PDF]


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Am. J. Physiol. Heart Circ. Physiol.Home page
P. E. Szmitko, H. Teoh, D. J. Stewart, and S. Verma
Adiponectin and cardiovascular disease: state of the art?
Am J Physiol Heart Circ Physiol, April 1, 2007; 292(4): H1655 - H1663.
[Abstract] [Full Text] [PDF]


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Cardiovasc ResHome page
T. A. Hopkins, N. Ouchi, R. Shibata, and K. Walsh
Adiponectin actions in the cardiovascular system
Cardiovasc Res, April 1, 2007; 74(1): 11 - 18.
[Abstract] [Full Text] [PDF]


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J. Biol. Chem.Home page
C. Wang, X. Mao, L. Wang, M. Liu, M. D. Wetzel, K.-L. Guan, L. Q. Dong, and F. Liu
Adiponectin Sensitizes Insulin Signaling by Reducing p70 S6 Kinase-mediated Serine Phosphorylation of IRS-1
J. Biol. Chem., March 16, 2007; 282(11): 7991 - 7996.
[Abstract] [Full Text] [PDF]


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Exp. Biol. Med.Home page
M. Tanida, J. Shen, Y. Horii, M. Matsuda, S. Kihara, T. Funahashi, I. Shimomura, H. Sawai, Y. Fukuda, Y. Matsuzawa, et al.
Effects of Adiponectin on the Renal Sympathetic Nerve Activity and Blood Pressure in Rats
Experimental Biology and Medicine, March 1, 2007; 232(3): 390 - 397.
[Abstract] [Full Text] [PDF]


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DiabetesHome page
M. Bjursell, A. Ahnmark, M. Bohlooly-Y, L. William-Olsson, M. Rhedin, X.-R. Peng, K. Ploj, A.-K. Gerdin, G. Arnerup, A. Elmgren, et al.
Opposing Effects of Adiponectin Receptors 1 and 2 on Energy Metabolism
Diabetes, March 1, 2007; 56(3): 583 - 593.
[Abstract] [Full Text] [PDF]


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Circ. Res.Home page
M. C. Towler and D. G. Hardie
AMP-Activated Protein Kinase in Metabolic Control and Insulin Signaling
Circ. Res., February 16, 2007; 100(3): 328 - 341.
[Abstract] [Full Text] [PDF]


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Exp. Biol. Med.Home page
R. R. Kraemer and V. D. Castracane
Exercise and Humoral Mediators of Peripheral Energy Balance: Ghrelin and Adiponectin
Experimental Biology and Medicine, February 1, 2007; 232(2): 184 - 194.
[Abstract] [Full Text] [PDF]


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J. Lipid Res.Home page
A. Purushotham, A. A. Wendel, L.-F. Liu, and M. A. Belury
Maintenance of adiponectin attenuates insulin resistance induced by dietary conjugated linoleic acid in mice
J. Lipid Res., February 1, 2007; 48(2): 444 - 452.
[Abstract] [Full Text] [PDF]


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Am. J. Physiol. Endocrinol. Metab.Home page
X. Chen, B. M. Sebastian, and L. E. Nagy
Chronic ethanol feeding to rats decreases adiponectin secretion by subcutaneous adipocytes
Am J Physiol Endocrinol Metab, February 1, 2007; 292(2): E621 - E628.
[Abstract] [Full Text] [PDF]


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Exp. Biol. Med.Home page
M. Fry, T. D. Hoyda, and A. V. Ferguson
Making Sense of It: Roles of the Sensory Circumventricular Organs in Feeding and Regulation of Energy Homeostasis
Experimental Biology and Medicine, January 1, 2007; 232(1): 14 - 26.
[Abstract] [Full Text] [PDF]


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DiabetesHome page
K. Raun, P. von Voss, C. F. Gotfredsen, V. Golozoubova, B. Rolin, and L. B. Knudsen
Liraglutide, a Long-Acting Glucagon-Like Peptide-1 Analog, Reduces Body Weight and Food Intake in Obese Candy-Fed Rats, Whereas a Dipeptidyl Peptidase-IV Inhibitor, Vildagliptin, Does Not
Diabetes, January 1, 2007; 56(1): 8 - 15.
[Abstract] [Full Text] [PDF]


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EndocrinologyHome page
F. Rodriguez-Pacheco, A. J. Martinez-Fuentes, S. Tovar, L. Pinilla, M. Tena-Sempere, C. Dieguez, J. P. Castano, and M. M. Malagon
Regulation of Pituitary Cell Function by Adiponectin
Endocrinology, January 1, 2007; 148(1): 401 - 410.
[Abstract] [Full Text] [PDF]


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J. Biol. Chem.Home page
L. Qiao and J. Shao
SIRT1 Regulates Adiponectin Gene Expression through Foxo1-C/Enhancer-binding Protein {alpha} Transcriptional Complex
J. Biol. Chem., December 29, 2006; 281(52): 39915 - 39924.
[Abstract] [Full Text] [PDF]


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Endocr. Rev.Home page
M. E. Trujillo and P. E. Scherer
Adipose Tissue-Derived Factors: Impact on Health and Disease
Endocr. Rev., December 1, 2006; 27(7): 762 - 778.
[Abstract] [Full Text] [PDF]


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J. Clin. Endocrinol. Metab.Home page
K. Kadowaki, M. Waguri, I. Nakanishi, Y. Miyashita, M. Nakayama, N. Suehara, T. Funahashi, I. Shimomura, and T. Fujita
Adiponectin Concentration in Umbilical Cord Serum Is Positively Associated with the Weight Ratio of Fetus to Placenta
J. Clin. Endocrinol. Metab., December 1, 2006; 91(12): 5090 - 5094.
[Abstract] [Full Text] [PDF]


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DiabetesHome page
N. Kubota, T. Yamauchi, K. Tobe, and T. Kadowaki
Adiponectin-Dependent and -Independent Pathways in Insulin-Sensitizing and Antidiabetic Actions of Thiazolidinediones
Diabetes, December 1, 2006; 55(Supplement_2): S32 - S38.
[Full Text] [PDF]


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Clin. Chem.Home page
H. H. Hegener, I-M. Lee, N. R. Cook, P. M. Ridker, and R. Y.L. Zee
Association of Adiponectin Gene Variations with Risk of Incident Myocardial Infarction and Ischemic Stroke: A Nested Case-Control Study
Clin. Chem., November 1, 2006; 52(11): 2021 - 2027.
[Abstract] [Full Text] [PDF]


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J. Clin. Endocrinol. Metab.Home page
R. Nakashima, N. Kamei, K. Yamane, S. Nakanishi, A. Nakashima, and N. Kohno
Decreased Total and High Molecular Weight Adiponectin Are Independent Risk Factors for the Development of Type 2 Diabetes in Japanese-Americans
J. Clin. Endocrinol. Metab., October 1, 2006; 91(10): 3873 - 3877.
[Abstract] [Full Text] [PDF]


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DiabetesHome page
M. J. Yoon, G. Y. Lee, J.-J. Chung, Y. H. Ahn, S. H. Hong, and J. B. Kim
Adiponectin Increases Fatty Acid Oxidation in Skeletal Muscle Cells by Sequential Activation of AMP-Activated Protein Kinase, p38 Mitogen-Activated Protein Kinase, and Peroxisome Proliferator-Activated Receptor {alpha}
Diabetes, September 1, 2006; 55(9): 2562 - 2570.
[Abstract] [Full Text] [PDF]


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EndocrinologyHome page
M. M. Haluzik, Z. Lacinova, M. Dolinkova, D. Haluzikova, D. Housa, A. Horinek, Z. Vernerova, T. Kumstyrova, and M. Haluzik
Improvement of Insulin Sensitivity after Peroxisome Proliferator-Activated Receptor-{alpha} Agonist Treatment Is Accompanied by Paradoxical Increase of Circulating Resistin Levels
Endocrinology, September 1, 2006; 147(9): 4517 - 4524.
[Abstract] [Full Text] [PDF]


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Am. J. Physiol. Endocrinol. Metab.Home page
C.-H. Kim, P. Pennisi, H. Zhao, S. Yakar, J. B. Kaufman, K. Iganaki, J. Shiloach, P. E. Scherer, M. J. Quon, and D. LeRoith
MKR mice are resistant to the metabolic actions of both insulin and adiponectin: discordance between insulin resistance and adiponectin responsiveness
Am J Physiol Endocrinol Metab, August 1, 2006; 291(2): E298 - E305.
[Abstract] [Full Text] [PDF]


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Phil Trans R Soc BHome page
P. Trayhurn and C. Bing
Appetite and energy balance signals from adipocytes
Phil Trans R Soc B, July 29, 2006; 361(1471): 1237 - 1249.
[Abstract] [Full Text] [PDF]


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J. Lipid Res.Home page
Y. Nakano, S. Tajima, A. Yoshimi, H. Akiyama, M. Tsushima, T. Tanioka, T. Negoro, M. Tomita, and T. Tobe
A novel enzyme-linked immunosorbent assay specific for high-molecular-weight adiponectin
J. Lipid Res., July 1, 2006; 47(7): 1572 - 1582.
[Abstract] [Full Text] [PDF]


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DiabetesHome page
Y. Aso, R. Yamamoto, S. Wakabayashi, T. Uchida, K. Takayanagi, K. Takebayashi, T. Okuno, T. Inoue, K. Node, T. Tobe, et al.
Comparison of Serum High-Molecular Weight (HMW) Adiponectin With Total Adiponectin Concentrations in Type 2 Diabetic Patients With Coronary Artery Disease Using a Novel Enzyme-Linked Immunosorbent Assay to Detect HMW Adiponectin.
Diabetes, July 1, 2006; 55(7): 1954 - 1960.
[Abstract] [Full Text] [PDF]


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EndocrinologyHome page
Y. Takemura, Y. Osuga, T. Yamauchi, M. Kobayashi, M. Harada, T. Hirata, C. Morimoto, Y. Hirota, O. Yoshino, K. Koga, et al.
Expression of Adiponectin Receptors and Its Possible Implication in the Human Endometrium
Endocrinology, July 1, 2006; 147(7): 3203 - 3210.
[Abstract] [Full Text] [PDF]


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J. Biol. Chem.Home page
Y. Wang, K. S. L. Lam, L. Chan, K. W. Chan, J. B. B. Lam, M. C. Lam, R. C. L. Hoo, W. W. N. Mak, G. J. S. Cooper, and A. Xu
Post-translational Modifications of the Four Conserved Lysine Residues within the Collagenous Domain of Adiponectin Are Required for the Formation of Its High Molecular Weight Oligomeric Complex
J. Biol. Chem., June 16, 2006; 281(24): 16391 - 16400.
[Abstract] [Full Text] [PDF]




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