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Apoc2 loss-of-function zebrafish mutant as a genetic model of hyperlipidemia

Apolipoprotein C-II (APOC2) is an obligatory activator of lipoprotein lipase. Human patients with APOC2 deficiency display severe hypertriglyceridemia while consuming a normal diet, often manifesting xanthomas, lipemia retinalis and pancreatitis. Hypertriglyceridemia is also an important risk factor...

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Autores principales: Liu, Chao, Gates, Keith P., Fang, Longhou, Amar, Marcelo J., Schneider, Dina A., Geng, Honglian, Huang, Wei, Kim, Jungsu, Pattison, Jennifer, Zhang, Jian, Witztum, Joseph L., Remaley, Alan T., Dong, P. Duc, Miller, Yury I.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4527288/
https://www.ncbi.nlm.nih.gov/pubmed/26044956
http://dx.doi.org/10.1242/dmm.019836
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author Liu, Chao
Gates, Keith P.
Fang, Longhou
Amar, Marcelo J.
Schneider, Dina A.
Geng, Honglian
Huang, Wei
Kim, Jungsu
Pattison, Jennifer
Zhang, Jian
Witztum, Joseph L.
Remaley, Alan T.
Dong, P. Duc
Miller, Yury I.
author_facet Liu, Chao
Gates, Keith P.
Fang, Longhou
Amar, Marcelo J.
Schneider, Dina A.
Geng, Honglian
Huang, Wei
Kim, Jungsu
Pattison, Jennifer
Zhang, Jian
Witztum, Joseph L.
Remaley, Alan T.
Dong, P. Duc
Miller, Yury I.
author_sort Liu, Chao
collection PubMed
description Apolipoprotein C-II (APOC2) is an obligatory activator of lipoprotein lipase. Human patients with APOC2 deficiency display severe hypertriglyceridemia while consuming a normal diet, often manifesting xanthomas, lipemia retinalis and pancreatitis. Hypertriglyceridemia is also an important risk factor for development of cardiovascular disease. Animal models to study hypertriglyceridemia are limited, with no Apoc2-knockout mouse reported. To develop a genetic model of hypertriglyceridemia, we generated an apoc2 mutant zebrafish characterized by the loss of Apoc2 function. apoc2 mutants show decreased plasma lipase activity and display chylomicronemia and severe hypertriglyceridemia, which closely resemble the phenotype observed in human patients with APOC2 deficiency. The hypertriglyceridemia in apoc2 mutants is rescued by injection of plasma from wild-type zebrafish or by injection of a human APOC2 mimetic peptide. Consistent with a previous report of a transient apoc2 knockdown, apoc2 mutant larvae have a minor delay in yolk consumption and angiogenesis. Furthermore, apoc2 mutants fed a normal diet accumulate lipid and lipid-laden macrophages in the vasculature, which resemble early events in the development of human atherosclerotic lesions. In addition, apoc2 mutant embryos show ectopic overgrowth of pancreas. Taken together, our data suggest that the apoc2 mutant zebrafish is a robust and versatile animal model to study hypertriglyceridemia and the mechanisms involved in the pathogenesis of associated human diseases.
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spelling pubmed-45272882015-09-03 Apoc2 loss-of-function zebrafish mutant as a genetic model of hyperlipidemia Liu, Chao Gates, Keith P. Fang, Longhou Amar, Marcelo J. Schneider, Dina A. Geng, Honglian Huang, Wei Kim, Jungsu Pattison, Jennifer Zhang, Jian Witztum, Joseph L. Remaley, Alan T. Dong, P. Duc Miller, Yury I. Dis Model Mech Resource Article Apolipoprotein C-II (APOC2) is an obligatory activator of lipoprotein lipase. Human patients with APOC2 deficiency display severe hypertriglyceridemia while consuming a normal diet, often manifesting xanthomas, lipemia retinalis and pancreatitis. Hypertriglyceridemia is also an important risk factor for development of cardiovascular disease. Animal models to study hypertriglyceridemia are limited, with no Apoc2-knockout mouse reported. To develop a genetic model of hypertriglyceridemia, we generated an apoc2 mutant zebrafish characterized by the loss of Apoc2 function. apoc2 mutants show decreased plasma lipase activity and display chylomicronemia and severe hypertriglyceridemia, which closely resemble the phenotype observed in human patients with APOC2 deficiency. The hypertriglyceridemia in apoc2 mutants is rescued by injection of plasma from wild-type zebrafish or by injection of a human APOC2 mimetic peptide. Consistent with a previous report of a transient apoc2 knockdown, apoc2 mutant larvae have a minor delay in yolk consumption and angiogenesis. Furthermore, apoc2 mutants fed a normal diet accumulate lipid and lipid-laden macrophages in the vasculature, which resemble early events in the development of human atherosclerotic lesions. In addition, apoc2 mutant embryos show ectopic overgrowth of pancreas. Taken together, our data suggest that the apoc2 mutant zebrafish is a robust and versatile animal model to study hypertriglyceridemia and the mechanisms involved in the pathogenesis of associated human diseases. The Company of Biologists 2015-08-01 /pmc/articles/PMC4527288/ /pubmed/26044956 http://dx.doi.org/10.1242/dmm.019836 Text en © 2015. Published by The Company of Biologists Ltd http://creativecommons.org/licenses/by/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Resource Article
Liu, Chao
Gates, Keith P.
Fang, Longhou
Amar, Marcelo J.
Schneider, Dina A.
Geng, Honglian
Huang, Wei
Kim, Jungsu
Pattison, Jennifer
Zhang, Jian
Witztum, Joseph L.
Remaley, Alan T.
Dong, P. Duc
Miller, Yury I.
Apoc2 loss-of-function zebrafish mutant as a genetic model of hyperlipidemia
title Apoc2 loss-of-function zebrafish mutant as a genetic model of hyperlipidemia
title_full Apoc2 loss-of-function zebrafish mutant as a genetic model of hyperlipidemia
title_fullStr Apoc2 loss-of-function zebrafish mutant as a genetic model of hyperlipidemia
title_full_unstemmed Apoc2 loss-of-function zebrafish mutant as a genetic model of hyperlipidemia
title_short Apoc2 loss-of-function zebrafish mutant as a genetic model of hyperlipidemia
title_sort apoc2 loss-of-function zebrafish mutant as a genetic model of hyperlipidemia
topic Resource Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4527288/
https://www.ncbi.nlm.nih.gov/pubmed/26044956
http://dx.doi.org/10.1242/dmm.019836
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