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Developmental thyroid hormone action on pro-opiomelanocortin-expressing cells programs hypothalamic BMPR1A depletion and brown fat activation

摘要Thyroid hormone excess secondary to global type 3 deiodinase ( DIO3 ) deficiency leads to increased locomotor activity and reduced adiposity, but also to concurrent alterations in parameters of the leptin–melanocortin system that would predict obesity. To distinguish the underlying contributions to the energy balance phenotype of DIO3 deficiency, we generated mice with thyroid hormone excess targeted to pro-opiomelanocortin ( POMC ) -expressing cells via cell-specific DIO3 inactivation. These mice exhibit a male-specific phenotype of reduced hypothalamic Pomc expression, hyperphagia, and increased activity in brown adipose tissue, with adiposity and serum levels of leptin and thyroid hormones remained normal. These male mice also manifest a marked and widespread hypothalamic reduction in the expression of bone morphogenetic receptor 1a ( BMPR1A ) , which has been shown to cause similar phenotypes when inactivated in POMC-expressing cells. Our results indicate that developmental overexposure to thyroid hormone in POMC-expressing cells programs energy balance mechanisms in a sexually dimorphic manner by suppressing adult hypothalamic BMPR1A expression.

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作者 Zhaofei Wu [1] M.Elena Martinez [1] Victoria DeMambro [2] Marie Francois [3] Arturo Hernandez [4] 学术成果认领
作者单位 MaineHealth Institute for Research,Center for Molecular Medicine,MaineHealth,Scarborough,ME 04074,USA [1] MaineHealth Institute for Research,Center for Molecular Medicine,MaineHealth,Scarborough,ME 04074,USA;Graduate School of Biomedical Science and Engineering,University of Maine,Orono,ME 04469,USA [2] Naomi Berrie Diabetes Center,Division of Molecular Genetics,Columbia University Irving Medical Center,New York,NY 10032,USA [3] MaineHealth Institute for Research,Center for Molecular Medicine,MaineHealth,Scarborough,ME 04074,USA;Graduate School of Biomedical Science and Engineering,University of Maine,Orono,ME 04469,USA;Department of Medicine,Tufts University School of Medicine,Boston,MA 02111,USA [4]
发布时间 2023-04-19(万方平台首次上网日期,不代表论文的发表时间)
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分子细胞生物学报(英文版)

分子细胞生物学报(英文版)

2022年9期

54-67页

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