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Adipocyte-Specific Deletion of Lamin A/C Largely Models Human Familial Partial Lipodystrophy Type 2

Mechanisms by which autosomal recessive mutations in Lmna cause familial partial lipodystrophy type 2 (FPLD2) are poorly understood. To investigate the function of lamin A/C in adipose tissue, we created mice with an adipocyte-specific loss of Lmna (Lmna(ADKO)). Although Lmna(ADKO) mice develop and...

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Autores principales: Corsa, Callie A.S., Walsh, Carolyn M., Bagchi, Devika P., Foss Freitas, Maria C., Li, Ziru, Hardij, Julie, Granger, Katrina, Mori, Hiroyuki, Schill, Rebecca L., Lewis, Kenneth T., Maung, Jessica N., Azaria, Ruth D., Rothberg, Amy E., Oral, Elif A., MacDougald, Ormond A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Diabetes Association 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8576431/
https://www.ncbi.nlm.nih.gov/pubmed/34088712
http://dx.doi.org/10.2337/db20-1001
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author Corsa, Callie A.S.
Walsh, Carolyn M.
Bagchi, Devika P.
Foss Freitas, Maria C.
Li, Ziru
Hardij, Julie
Granger, Katrina
Mori, Hiroyuki
Schill, Rebecca L.
Lewis, Kenneth T.
Maung, Jessica N.
Azaria, Ruth D.
Rothberg, Amy E.
Oral, Elif A.
MacDougald, Ormond A.
author_facet Corsa, Callie A.S.
Walsh, Carolyn M.
Bagchi, Devika P.
Foss Freitas, Maria C.
Li, Ziru
Hardij, Julie
Granger, Katrina
Mori, Hiroyuki
Schill, Rebecca L.
Lewis, Kenneth T.
Maung, Jessica N.
Azaria, Ruth D.
Rothberg, Amy E.
Oral, Elif A.
MacDougald, Ormond A.
author_sort Corsa, Callie A.S.
collection PubMed
description Mechanisms by which autosomal recessive mutations in Lmna cause familial partial lipodystrophy type 2 (FPLD2) are poorly understood. To investigate the function of lamin A/C in adipose tissue, we created mice with an adipocyte-specific loss of Lmna (Lmna(ADKO)). Although Lmna(ADKO) mice develop and maintain adipose tissues in early postnatal life, they show a striking and progressive loss of white and brown adipose tissues as they approach sexual maturity. Lmna(ADKO) mice exhibit surprisingly mild metabolic dysfunction on a chow diet, but on a high-fat diet they share many characteristics of FPLD2 including hyperglycemia, hepatic steatosis, hyperinsulinemia, and almost undetectable circulating adiponectin and leptin. Whereas Lmna(ADKO) mice have reduced regulated and constitutive bone marrow adipose tissue with a concomitant increase in cortical bone, FPLD2 patients have reduced bone mass and bone mineral density compared with controls. In cell culture models of Lmna deficiency, mesenchymal precursors undergo adipogenesis without impairment, whereas fully differentiated adipocytes have increased lipolytic responses to adrenergic stimuli. Lmna(ADKO) mice faithfully reproduce many characteristics of FPLD2 and thus provide a unique animal model to investigate mechanisms underlying Lmna-dependent loss of adipose tissues.
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spelling pubmed-85764312022-09-01 Adipocyte-Specific Deletion of Lamin A/C Largely Models Human Familial Partial Lipodystrophy Type 2 Corsa, Callie A.S. Walsh, Carolyn M. Bagchi, Devika P. Foss Freitas, Maria C. Li, Ziru Hardij, Julie Granger, Katrina Mori, Hiroyuki Schill, Rebecca L. Lewis, Kenneth T. Maung, Jessica N. Azaria, Ruth D. Rothberg, Amy E. Oral, Elif A. MacDougald, Ormond A. Diabetes Metabolism Mechanisms by which autosomal recessive mutations in Lmna cause familial partial lipodystrophy type 2 (FPLD2) are poorly understood. To investigate the function of lamin A/C in adipose tissue, we created mice with an adipocyte-specific loss of Lmna (Lmna(ADKO)). Although Lmna(ADKO) mice develop and maintain adipose tissues in early postnatal life, they show a striking and progressive loss of white and brown adipose tissues as they approach sexual maturity. Lmna(ADKO) mice exhibit surprisingly mild metabolic dysfunction on a chow diet, but on a high-fat diet they share many characteristics of FPLD2 including hyperglycemia, hepatic steatosis, hyperinsulinemia, and almost undetectable circulating adiponectin and leptin. Whereas Lmna(ADKO) mice have reduced regulated and constitutive bone marrow adipose tissue with a concomitant increase in cortical bone, FPLD2 patients have reduced bone mass and bone mineral density compared with controls. In cell culture models of Lmna deficiency, mesenchymal precursors undergo adipogenesis without impairment, whereas fully differentiated adipocytes have increased lipolytic responses to adrenergic stimuli. Lmna(ADKO) mice faithfully reproduce many characteristics of FPLD2 and thus provide a unique animal model to investigate mechanisms underlying Lmna-dependent loss of adipose tissues. American Diabetes Association 2021-09 2021-06-04 /pmc/articles/PMC8576431/ /pubmed/34088712 http://dx.doi.org/10.2337/db20-1001 Text en © 2021 by the American Diabetes Association https://www.diabetesjournals.org/content/licenseReaders 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. More information is available at https://www.diabetesjournals.org/content/license.
spellingShingle Metabolism
Corsa, Callie A.S.
Walsh, Carolyn M.
Bagchi, Devika P.
Foss Freitas, Maria C.
Li, Ziru
Hardij, Julie
Granger, Katrina
Mori, Hiroyuki
Schill, Rebecca L.
Lewis, Kenneth T.
Maung, Jessica N.
Azaria, Ruth D.
Rothberg, Amy E.
Oral, Elif A.
MacDougald, Ormond A.
Adipocyte-Specific Deletion of Lamin A/C Largely Models Human Familial Partial Lipodystrophy Type 2
title Adipocyte-Specific Deletion of Lamin A/C Largely Models Human Familial Partial Lipodystrophy Type 2
title_full Adipocyte-Specific Deletion of Lamin A/C Largely Models Human Familial Partial Lipodystrophy Type 2
title_fullStr Adipocyte-Specific Deletion of Lamin A/C Largely Models Human Familial Partial Lipodystrophy Type 2
title_full_unstemmed Adipocyte-Specific Deletion of Lamin A/C Largely Models Human Familial Partial Lipodystrophy Type 2
title_short Adipocyte-Specific Deletion of Lamin A/C Largely Models Human Familial Partial Lipodystrophy Type 2
title_sort adipocyte-specific deletion of lamin a/c largely models human familial partial lipodystrophy type 2
topic Metabolism
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8576431/
https://www.ncbi.nlm.nih.gov/pubmed/34088712
http://dx.doi.org/10.2337/db20-1001
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