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Defective Lysosomal Lipolysis Causes Prenatal Lipid Accumulation and Exacerbates Immediately after Birth

Cholesterol and fatty acids are essential lipids that are critical for membrane biosynthesis and fetal organ development. Cholesteryl esters (CE) are degraded by hormone-sensitive lipase (HSL) in the cytosol and by lysosomal acid lipase (LAL) in the lysosome. Impaired LAL or HSL activity causes rare...

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Autores principales: Kuentzel, Katharina B., Bradić, Ivan, Akhmetshina, Alena, Korbelius, Melanie, Rainer, Silvia, Kolb, Dagmar, Gauster, Martin, Vujić, Nemanja, Kratky, Dagmar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8508985/
https://www.ncbi.nlm.nih.gov/pubmed/34638755
http://dx.doi.org/10.3390/ijms221910416
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author Kuentzel, Katharina B.
Bradić, Ivan
Akhmetshina, Alena
Korbelius, Melanie
Rainer, Silvia
Kolb, Dagmar
Gauster, Martin
Vujić, Nemanja
Kratky, Dagmar
author_facet Kuentzel, Katharina B.
Bradić, Ivan
Akhmetshina, Alena
Korbelius, Melanie
Rainer, Silvia
Kolb, Dagmar
Gauster, Martin
Vujić, Nemanja
Kratky, Dagmar
author_sort Kuentzel, Katharina B.
collection PubMed
description Cholesterol and fatty acids are essential lipids that are critical for membrane biosynthesis and fetal organ development. Cholesteryl esters (CE) are degraded by hormone-sensitive lipase (HSL) in the cytosol and by lysosomal acid lipase (LAL) in the lysosome. Impaired LAL or HSL activity causes rare pathologies in humans, with HSL deficiency presenting less severe clinical manifestations. The infantile form of LAL deficiency, a lysosomal lipid storage disorder, leads to premature death. However, the importance of defective lysosomal CE degradation and its consequences during early life are incompletely understood. We therefore investigated how defective CE catabolism affects fetus and infant maturation using Lal and Hsl knockout (-/-) mouse models. This study demonstrates that defective lysosomal but not neutral lipolysis alters placental and fetal cholesterol homeostasis and exhibits an initial disease pathology already in utero as Lal-/- fetuses accumulate hepatic lysosomal lipids. Immediately after birth, LAL deficiency exacerbates with massive hepatic lysosomal lipid accumulation, which continues to worsen into young adulthood. Our data highlight the crucial role of LAL during early development, with the first weeks after birth being critical for aggravating LAL deficiency.
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spelling pubmed-85089852021-10-13 Defective Lysosomal Lipolysis Causes Prenatal Lipid Accumulation and Exacerbates Immediately after Birth Kuentzel, Katharina B. Bradić, Ivan Akhmetshina, Alena Korbelius, Melanie Rainer, Silvia Kolb, Dagmar Gauster, Martin Vujić, Nemanja Kratky, Dagmar Int J Mol Sci Article Cholesterol and fatty acids are essential lipids that are critical for membrane biosynthesis and fetal organ development. Cholesteryl esters (CE) are degraded by hormone-sensitive lipase (HSL) in the cytosol and by lysosomal acid lipase (LAL) in the lysosome. Impaired LAL or HSL activity causes rare pathologies in humans, with HSL deficiency presenting less severe clinical manifestations. The infantile form of LAL deficiency, a lysosomal lipid storage disorder, leads to premature death. However, the importance of defective lysosomal CE degradation and its consequences during early life are incompletely understood. We therefore investigated how defective CE catabolism affects fetus and infant maturation using Lal and Hsl knockout (-/-) mouse models. This study demonstrates that defective lysosomal but not neutral lipolysis alters placental and fetal cholesterol homeostasis and exhibits an initial disease pathology already in utero as Lal-/- fetuses accumulate hepatic lysosomal lipids. Immediately after birth, LAL deficiency exacerbates with massive hepatic lysosomal lipid accumulation, which continues to worsen into young adulthood. Our data highlight the crucial role of LAL during early development, with the first weeks after birth being critical for aggravating LAL deficiency. MDPI 2021-09-27 /pmc/articles/PMC8508985/ /pubmed/34638755 http://dx.doi.org/10.3390/ijms221910416 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kuentzel, Katharina B.
Bradić, Ivan
Akhmetshina, Alena
Korbelius, Melanie
Rainer, Silvia
Kolb, Dagmar
Gauster, Martin
Vujić, Nemanja
Kratky, Dagmar
Defective Lysosomal Lipolysis Causes Prenatal Lipid Accumulation and Exacerbates Immediately after Birth
title Defective Lysosomal Lipolysis Causes Prenatal Lipid Accumulation and Exacerbates Immediately after Birth
title_full Defective Lysosomal Lipolysis Causes Prenatal Lipid Accumulation and Exacerbates Immediately after Birth
title_fullStr Defective Lysosomal Lipolysis Causes Prenatal Lipid Accumulation and Exacerbates Immediately after Birth
title_full_unstemmed Defective Lysosomal Lipolysis Causes Prenatal Lipid Accumulation and Exacerbates Immediately after Birth
title_short Defective Lysosomal Lipolysis Causes Prenatal Lipid Accumulation and Exacerbates Immediately after Birth
title_sort defective lysosomal lipolysis causes prenatal lipid accumulation and exacerbates immediately after birth
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8508985/
https://www.ncbi.nlm.nih.gov/pubmed/34638755
http://dx.doi.org/10.3390/ijms221910416
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