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Generation and validation of a conditional knockout mouse model for desmosterolosis

The enzyme 3β-hydroxysterol-Δ24 reductase (DHCR24, EC 1.3.1.72) catalyzes the conversion of desmosterol to cholesterol and is obligatory for post-squalene cholesterol synthesis. Genetic loss of this enzyme results in desmosterolosis (MIM #602398), a rare disease that presents with multiple congenita...

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Autores principales: Kanuri, Babunageswararao, Fong, Vincent, Ponny, Sithara Raju, Weerasekera, Ranjuna, Pulakanti, Kirthi, Patel, Kriya S., Tyshynsky, Roman, Patel, Shailendra B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7933790/
https://www.ncbi.nlm.nih.gov/pubmed/33524375
http://dx.doi.org/10.1016/j.jlr.2021.100028
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author Kanuri, Babunageswararao
Fong, Vincent
Ponny, Sithara Raju
Weerasekera, Ranjuna
Pulakanti, Kirthi
Patel, Kriya S.
Tyshynsky, Roman
Patel, Shailendra B.
author_facet Kanuri, Babunageswararao
Fong, Vincent
Ponny, Sithara Raju
Weerasekera, Ranjuna
Pulakanti, Kirthi
Patel, Kriya S.
Tyshynsky, Roman
Patel, Shailendra B.
author_sort Kanuri, Babunageswararao
collection PubMed
description The enzyme 3β-hydroxysterol-Δ24 reductase (DHCR24, EC 1.3.1.72) catalyzes the conversion of desmosterol to cholesterol and is obligatory for post-squalene cholesterol synthesis. Genetic loss of this enzyme results in desmosterolosis (MIM #602398), a rare disease that presents with multiple congenital anomalies, features of which overlap with subjects with the Smith-Lemli-Opitz syndrome (another post-squalene cholesterol disorder). Global knockout (KO) of Dhcr24 in mice recapitulates the biochemical phenotype, but pups die within 24 h from a lethal dermopathy, limiting its utility as a disease model. Here, we report a conditional KO mouse model (Dhcr24(flx/flx)) and validate it by generating a liver-specific KO (Dhcr24(flx/flx,Alb-Cre)). Dhcr24(flx/flx,Alb-Cre) mice showed normal growth and fertility, while accumulating significantly elevated levels of desmosterol in plasma and liver. Of interest, despite the loss of cholesterol synthesis in the liver, hepatic architecture, gene expression of sterol synthesis genes, and lipoprotein secretion appeared unchanged. The increased desmosterol content in bile and stool indicated a possible compensatory role of hepatobiliary secretion in maintaining sterol homeostasis. This mouse model should now allow for the study of the effects of postnatal loss of DHCR24, as well as role of tissue-specific loss of this enzyme during development and adulthood.
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spelling pubmed-79337902021-03-19 Generation and validation of a conditional knockout mouse model for desmosterolosis Kanuri, Babunageswararao Fong, Vincent Ponny, Sithara Raju Weerasekera, Ranjuna Pulakanti, Kirthi Patel, Kriya S. Tyshynsky, Roman Patel, Shailendra B. J Lipid Res Research Article The enzyme 3β-hydroxysterol-Δ24 reductase (DHCR24, EC 1.3.1.72) catalyzes the conversion of desmosterol to cholesterol and is obligatory for post-squalene cholesterol synthesis. Genetic loss of this enzyme results in desmosterolosis (MIM #602398), a rare disease that presents with multiple congenital anomalies, features of which overlap with subjects with the Smith-Lemli-Opitz syndrome (another post-squalene cholesterol disorder). Global knockout (KO) of Dhcr24 in mice recapitulates the biochemical phenotype, but pups die within 24 h from a lethal dermopathy, limiting its utility as a disease model. Here, we report a conditional KO mouse model (Dhcr24(flx/flx)) and validate it by generating a liver-specific KO (Dhcr24(flx/flx,Alb-Cre)). Dhcr24(flx/flx,Alb-Cre) mice showed normal growth and fertility, while accumulating significantly elevated levels of desmosterol in plasma and liver. Of interest, despite the loss of cholesterol synthesis in the liver, hepatic architecture, gene expression of sterol synthesis genes, and lipoprotein secretion appeared unchanged. The increased desmosterol content in bile and stool indicated a possible compensatory role of hepatobiliary secretion in maintaining sterol homeostasis. This mouse model should now allow for the study of the effects of postnatal loss of DHCR24, as well as role of tissue-specific loss of this enzyme during development and adulthood. American Society for Biochemistry and Molecular Biology 2021-01-30 /pmc/articles/PMC7933790/ /pubmed/33524375 http://dx.doi.org/10.1016/j.jlr.2021.100028 Text en http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Kanuri, Babunageswararao
Fong, Vincent
Ponny, Sithara Raju
Weerasekera, Ranjuna
Pulakanti, Kirthi
Patel, Kriya S.
Tyshynsky, Roman
Patel, Shailendra B.
Generation and validation of a conditional knockout mouse model for desmosterolosis
title Generation and validation of a conditional knockout mouse model for desmosterolosis
title_full Generation and validation of a conditional knockout mouse model for desmosterolosis
title_fullStr Generation and validation of a conditional knockout mouse model for desmosterolosis
title_full_unstemmed Generation and validation of a conditional knockout mouse model for desmosterolosis
title_short Generation and validation of a conditional knockout mouse model for desmosterolosis
title_sort generation and validation of a conditional knockout mouse model for desmosterolosis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7933790/
https://www.ncbi.nlm.nih.gov/pubmed/33524375
http://dx.doi.org/10.1016/j.jlr.2021.100028
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