Literature DB >> 17038557

Increased hypothalamic protein tyrosine phosphatase 1B contributes to leptin resistance with age.

Christopher D Morrison1, Christy L White, Zhong Wang, Seung-Yub Lee, David S Lawrence, William T Cefalu, Zhong-Yin Zhang, Thomas W Gettys.   

Abstract

Animals at advanced ages exhibit a reduction in central leptin sensitivity. However, changes in growth, metabolism, and obesity risk occur much earlier in life, particularly during the transition from youth to middle age. To determine when initial decreases in central leptin sensitivity occur, leptin-dependent suppression of food intake was tested in 8-, 12-, and 20-wk-old male, chow-fed Sprague Dawley rats. Intracerebroventricular leptin injection (3 microg) suppressed 24-h food intake in 8- and 12-wk-old rats (P < 0.05) but not 20-wk-old rats. To identify potential cellular mediators of this resistance, we focused on protein tyrosine phosphatase 1B (PTP1B), a recently described inhibitor of leptin signaling. PTP1B protein levels, as determined by Western blot, were significantly higher in mediobasal hypothalamic punches collected from 20-wk-old rats, compared with 8-wk-old rats (P < 0.05). When 20-wk-old rats were fasted for 24 h, levels of hypothalamic PTP1B decreased (P < 0.05), coincident with a restoration of leptin sensitivity. To directly test whether inhibition of PTP1B restores leptin sensitivity, 20-wk-old chow-fed rats were pretreated with a pharmacological PTP1B inhibitor 1 h before leptin, and 24-h food intake was recorded. As expected, leptin alone produced a small but nonsignificant reduction in food intake. However, pretreatment with the PTP1B inhibitor resulted in a marked improvement in leptin-dependent suppression of food intake (P < 0.05). These data are consistent with the hypothesis that increases in PTP1B contribute to hypothalamic leptin resistance as rats transition into middle age.

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Year:  2006        PMID: 17038557      PMCID: PMC2596872          DOI: 10.1210/en.2006-0672

Source DB:  PubMed          Journal:  Endocrinology        ISSN: 0013-7227            Impact factor:   4.736


  46 in total

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  48 in total

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Review 3.  Leptin signalling pathways in hypothalamic neurons.

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4.  Elevated hypothalamic TCPTP in obesity contributes to cellular leptin resistance.

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Review 5.  Neural and metabolic regulation of macronutrient intake and selection.

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7.  Endogenous leptin contributes to baroreflex suppression within the solitary tract nucleus of aged rats.

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8.  Disruption of leptin signalling in a mouse model of Alzheimer's disease.

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Review 9.  Leptin signaling and leptin resistance.

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Review 10.  Implications of crosstalk between leptin and insulin signaling during the development of diet-induced obesity.

Authors:  Christopher D Morrison; Peter Huypens; Laura K Stewart; Thomas W Gettys
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