Publications View
Irs1 and Irs2 signaling is essential for hepatic glucose homeostasis and systemic growth.
Authors: Authors: Dong X, Park S, Lin X, Copps K, Yi X, White MF.
J Clin Invest
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J Clin Invest
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Reduced mitochondrial density and increased IRS-1 serine phosphorylation in muscle of insulin-resistant offspring of type 2 diabetic parents.
Authors: Authors: Morino K, Petersen KF, Dufour S, Befroy D, Frattini J, Shatzkes N, Neschen S, White MF, Bilz S, Sono S, Pypaert M, Shulman GI.
J Clin Invest
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J Clin Invest
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Phosphatase and tensin homolog regulation of islet growth and glucose homeostasis.
Authors: Authors: Kushner JA, Simpson L, Wartschow LM, Guo S, Rankin MM, Parsons R, White MF.
J Biol Chem
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J Biol Chem
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Molecular mechanism(s) of burn-induced insulin resistance in murine skeletal muscle: role of IRS phosphorylation.
Authors: Authors: Zhang Q, Carter EA, Ma BY, White M, Fischman AJ, Tompkins RG.
Life Sci
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Life Sci
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Alterations in growth and apoptosis of insulin receptor substrate-1-deficient beta-cells.
Authors: Authors: Hennige AM, Ozcan U, Okada T, Jhala US, Schubert M, White MF, Kulkarni RN.
Am J Physiol Endocrinol Metab
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Am J Physiol Endocrinol Metab
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Attenuation of accumulation of neointimal lipid by pioglitazone in mice genetically deficient in insulin receptor substrate-2 and apolipoprotein E.
Authors: Authors: Clough MH, Schneider DJ, Sobel BE, White MF, Wadsworth MP, Taatjes DJ.
J Histochem Cytochem
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J Histochem Cytochem
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Cyclins D2 and D1 are essential for postnatal pancreatic beta-cell growth.
Authors: Authors: Kushner JA, Ciemerych MA, Sicinska E, Wartschow LM, Teta M, Long SY, Sicinski P, White MF.
Mol Cell Biol
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Mol Cell Biol
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Insulin receptor substrate 2 plays diverse cell-specific roles in the regulation of glucose transport.
Authors: Authors: Sadagurski M, Weingarten G, Rhodes CJ, White MF, Wertheimer E.
J Biol Chem
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J Biol Chem
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Insulin receptor substrate 2 is essential for maturation and survival of photoreceptor cells.
Authors: Authors: Yi X, Schubert M, Peachey NS, Suzuma K, Burks DJ, Kushner JA, Suzuma I, Cahill C, Flint CL, Dow MA, Leshan RL, King GL, White MF.
J Neurosci
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J Neurosci
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Deletion of Cdkn1b ameliorates hyperglycemia by maintaining compensatory hyperinsulinemia in diabetic mice.
Authors: Authors: Uchida T, Nakamura T, Hashimoto N, Matsuda T, Kotani K, Sakaue H, Kido Y, Hayashi Y, Nakayama KI, White MF, Kasuga M.
Nat Med
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Nat Med
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