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Citations to this article

The role of insulin receptor substrate 2 in hypothalamic and β cell function
Agharul I. Choudhury, … , Michael L.J. Ashford, Dominic J. Withers
Agharul I. Choudhury, … , Michael L.J. Ashford, Dominic J. Withers
Published April 1, 2005
Citation Information: J Clin Invest. 2005;115(4):940-950. https://doi.org/10.1172/JCI24445.
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Article Metabolism

The role of insulin receptor substrate 2 in hypothalamic and β cell function

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Abstract

Insulin receptor substrate 2 (Irs2) plays complex roles in energy homeostasis. We generated mice lacking Irs2 in β cells and a population of hypothalamic neurons (RIPCreIrs2KO), in all neurons (NesCreIrs2KO), and in proopiomelanocortin neurons (POMCCreIrs2KO) to determine the role of Irs2 in the CNS and β cell. RIPCreIrs2KO mice displayed impaired glucose tolerance and reduced β cell mass. Overt diabetes did not ensue, because β cells escaping Cre-mediated recombination progressively populated islets. RIPCreIrs2KO and NesCreIrs2KO mice displayed hyperphagia, obesity, and increased body length, which suggests altered melanocortin action. POMCCreIrs2KO mice did not display this phenotype. RIPCreIrs2KO and NesCreIrs2KO mice retained leptin sensitivity, which suggests that CNS Irs2 pathways are not required for leptin action. NesCreIrs2KO and POMCCreIrs2KO mice did not display reduced β cell mass, but NesCreIrs2KO mice displayed mild abnormalities of glucose homeostasis. RIPCre neurons did not express POMC or neuropeptide Y. Insulin and a melanocortin agonist depolarized RIPCre neurons, whereas leptin was ineffective. Insulin hyperpolarized and leptin depolarized POMC neurons. Our findings demonstrate a critical role for IRS2 in β cell and hypothalamic function and provide insights into the role of RIPCre neurons, a distinct hypothalamic neuronal population, in growth and energy homeostasis.

Authors

Agharul I. Choudhury, Helen Heffron, Mark A. Smith, Hind Al-Qassab, Allison W. Xu, Colin Selman, Marcus Simmgen, Melanie Clements, Marc Claret, Gavin MacColl, David C. Bedford, Kazunari Hisadome, Ivan Diakonov, Vazira Moosajee, Jimmy D. Bell, John R. Speakman, Rachel L. Batterham, Gregory S. Barsh, Michael L.J. Ashford, Dominic J. Withers

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Total citations by year

Year: 2025 2024 2023 2022 2021 2020 2019 2018 2017 2016 2015 2014 2013 2012 2011 2010 2009 2008 2007 2006 Total
Citations: 1 1 1 2 3 4 5 9 4 5 5 8 8 12 14 11 15 6 5 6 125
Citation information
This citation data is accumulated from CrossRef, which receives citation information from participating publishers, including this journal. Not all publishers participate in CrossRef, so this information is not comprehensive. Additionally, data may not reflect the most current citations to this article, and the data may differ from citation information available from other sources (for example, Google Scholar, Web of Science, and Scopus).

Citations to this article in year 2015 (5)

Title and authors Publication Year
Ribosomal S6K1 in POMC and AgRP Neurons Regulates Glucose Homeostasis but Not Feeding Behavior in Mice
MA Smith, L Katsouri, EE Irvine, MK Hankir, SM Pedroni, PJ Voshol, MW Gordon, AI Choudhury, A Woods, A Vidal-Puig, D Carling, DJ Withers
Cell Reports 2015
Regulation of Blood Pressure, Appetite, and Glucose by Leptin After Inactivation of Insulin Receptor Substrate 2 Signaling in the Entire Brain or in Proopiomelanocortin Neurons
JM Carmo, AA da Silva, Z Wang, NJ Freeman, AJ Alsheik, A Adi, JE Hall
Hypertension 2015
Control of respiratory and cardiovascular functions by leptin
M Bassi, WI Furuya, DB Zoccal, JV Menani, E Colombari, JE Hall, AA Silva, JM Carmo, DS Colombari
Life Sciences 2015
Leptin recruits Creb-regulated transcriptional coactivator 1 to improve hyperglycemia in insulin-deficient diabetes
GH Kim, A Szabo, EM King, J Ayala, JE Ayala, JY Altarejos
Molecular Metabolism 2015
Brain-derived neurotrophic factor is required for axonal growth of selective groups of neurons in the arcuate nucleus
GY Liao, K Bouyer, A Kamitakahara, N Sahibzada, CH Wang, M Rutlin, RB Simerly, B Xu
Molecular Metabolism 2015

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