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Gestational Diabetes Mellitus Resulting From Impaired β-Cell Compensation in the Absence of FoxM1, a Novel Downstream Effector of Placental Lactogen

OBJECTIVE: The objectives of the study were to determine whether the cell cycle transcription factor, FoxM1, is required for glucose homeostasis and β-cell mass expansion in maternal islets during pregnancy and whether FoxM1 is essential for placental lactogen (PL)-induced β-cell proliferation. RESE...

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Detalles Bibliográficos
Autores principales: Zhang, Hongjie, Zhang, Jia, Pope, Christine F., Crawford, Laura A., Vasavada, Rupangi C., Jagasia, Shubhada M., Gannon, Maureen
Formato: Texto
Lenguaje:English
Publicado: American Diabetes Association 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2797915/
https://www.ncbi.nlm.nih.gov/pubmed/19833884
http://dx.doi.org/10.2337/db09-0050
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author Zhang, Hongjie
Zhang, Jia
Pope, Christine F.
Crawford, Laura A.
Vasavada, Rupangi C.
Jagasia, Shubhada M.
Gannon, Maureen
author_facet Zhang, Hongjie
Zhang, Jia
Pope, Christine F.
Crawford, Laura A.
Vasavada, Rupangi C.
Jagasia, Shubhada M.
Gannon, Maureen
author_sort Zhang, Hongjie
collection PubMed
description OBJECTIVE: The objectives of the study were to determine whether the cell cycle transcription factor, FoxM1, is required for glucose homeostasis and β-cell mass expansion in maternal islets during pregnancy and whether FoxM1 is essential for placental lactogen (PL)-induced β-cell proliferation. RESEARCH DESIGN AND METHODS: β-Cell mass, β-cell proliferation, and glucose homeostasis were assessed in virgin, pregnant, and postpartum mice with a pancreas-wide Foxm1 deletion (FoxM1(Δpanc)). Wild-type islets were cultured with or without PL and examined for Foxm1 induction. Transgenic mice overexpressing PL in β-cells were bred with FoxM1(Δpanc) mice, and β-cell proliferation was examined. RESULTS: Foxm1 was upregulated in maternal islets during pregnancy. In contrast to controls, β-cell proliferation did not increase in pregnant FoxM1(Δpanc) females. Mutant islets showed increased Menin and nuclear p27. FoxM1(Δpanc) females developed gestational diabetes mellitus as pregnancy progressed. After parturition, euglycemia was restored in FoxM1(Δpanc) females, but islet size was significantly reduced. Strikingly, β-cell mass was normal in postpartum FoxM1(Δpanc) pancreata due to a combination of increased β-cell size and islet neogenesis. Evidence for neogenesis included increased number of endocrine clusters, increased proportion of smaller islets, and increased neurogenin 3 or insulin expression in cells adjacent to ducts. PL induced Foxm1 expression in cultured islets, and FoxM1 was essential for PL-mediated increases in β-cell proliferation in vivo. CONCLUSIONS: FoxM1 is essential for β-cell compensation during pregnancy. In the absence of increased β-cell proliferation, neogenesis is induced in postpartum FoxM1(Δpanc) pancreata. Our results suggest that FoxM1 functions downstream of PL to mediate its effects on β-cell proliferation.
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spelling pubmed-27979152011-01-01 Gestational Diabetes Mellitus Resulting From Impaired β-Cell Compensation in the Absence of FoxM1, a Novel Downstream Effector of Placental Lactogen Zhang, Hongjie Zhang, Jia Pope, Christine F. Crawford, Laura A. Vasavada, Rupangi C. Jagasia, Shubhada M. Gannon, Maureen Diabetes Original Article OBJECTIVE: The objectives of the study were to determine whether the cell cycle transcription factor, FoxM1, is required for glucose homeostasis and β-cell mass expansion in maternal islets during pregnancy and whether FoxM1 is essential for placental lactogen (PL)-induced β-cell proliferation. RESEARCH DESIGN AND METHODS: β-Cell mass, β-cell proliferation, and glucose homeostasis were assessed in virgin, pregnant, and postpartum mice with a pancreas-wide Foxm1 deletion (FoxM1(Δpanc)). Wild-type islets were cultured with or without PL and examined for Foxm1 induction. Transgenic mice overexpressing PL in β-cells were bred with FoxM1(Δpanc) mice, and β-cell proliferation was examined. RESULTS: Foxm1 was upregulated in maternal islets during pregnancy. In contrast to controls, β-cell proliferation did not increase in pregnant FoxM1(Δpanc) females. Mutant islets showed increased Menin and nuclear p27. FoxM1(Δpanc) females developed gestational diabetes mellitus as pregnancy progressed. After parturition, euglycemia was restored in FoxM1(Δpanc) females, but islet size was significantly reduced. Strikingly, β-cell mass was normal in postpartum FoxM1(Δpanc) pancreata due to a combination of increased β-cell size and islet neogenesis. Evidence for neogenesis included increased number of endocrine clusters, increased proportion of smaller islets, and increased neurogenin 3 or insulin expression in cells adjacent to ducts. PL induced Foxm1 expression in cultured islets, and FoxM1 was essential for PL-mediated increases in β-cell proliferation in vivo. CONCLUSIONS: FoxM1 is essential for β-cell compensation during pregnancy. In the absence of increased β-cell proliferation, neogenesis is induced in postpartum FoxM1(Δpanc) pancreata. Our results suggest that FoxM1 functions downstream of PL to mediate its effects on β-cell proliferation. American Diabetes Association 2010-01 2009-10-15 /pmc/articles/PMC2797915/ /pubmed/19833884 http://dx.doi.org/10.2337/db09-0050 Text en © 2010 by the American Diabetes Association. Readers may use this article as long as the work is properly cited, the use is educational and not for profit, and the work is not altered. See http://creativecommons.org/licenses/by-nc-nd/3.0/ for details.
spellingShingle Original Article
Zhang, Hongjie
Zhang, Jia
Pope, Christine F.
Crawford, Laura A.
Vasavada, Rupangi C.
Jagasia, Shubhada M.
Gannon, Maureen
Gestational Diabetes Mellitus Resulting From Impaired β-Cell Compensation in the Absence of FoxM1, a Novel Downstream Effector of Placental Lactogen
title Gestational Diabetes Mellitus Resulting From Impaired β-Cell Compensation in the Absence of FoxM1, a Novel Downstream Effector of Placental Lactogen
title_full Gestational Diabetes Mellitus Resulting From Impaired β-Cell Compensation in the Absence of FoxM1, a Novel Downstream Effector of Placental Lactogen
title_fullStr Gestational Diabetes Mellitus Resulting From Impaired β-Cell Compensation in the Absence of FoxM1, a Novel Downstream Effector of Placental Lactogen
title_full_unstemmed Gestational Diabetes Mellitus Resulting From Impaired β-Cell Compensation in the Absence of FoxM1, a Novel Downstream Effector of Placental Lactogen
title_short Gestational Diabetes Mellitus Resulting From Impaired β-Cell Compensation in the Absence of FoxM1, a Novel Downstream Effector of Placental Lactogen
title_sort gestational diabetes mellitus resulting from impaired β-cell compensation in the absence of foxm1, a novel downstream effector of placental lactogen
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2797915/
https://www.ncbi.nlm.nih.gov/pubmed/19833884
http://dx.doi.org/10.2337/db09-0050
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