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A Deficiency of Ceramide Biosynthesis Causes Cerebellar Purkinje Cell Neurodegeneration and Lipofuscin Accumulation

Sphingolipids, lipids with a common sphingoid base (also termed long chain base) backbone, play essential cellular structural and signaling functions. Alterations of sphingolipid levels have been implicated in many diseases, including neurodegenerative disorders. However, it remains largely unclear...

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Autores principales: Zhao, Lihong, Spassieva, Stefka D., Jucius, Thomas J., Shultz, Leonard D., Shick, H. Elizabeth, Macklin, Wendy B., Hannun, Yusuf A., Obeid, Lina M., Ackerman, Susan L.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3098191/
https://www.ncbi.nlm.nih.gov/pubmed/21625621
http://dx.doi.org/10.1371/journal.pgen.1002063
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author Zhao, Lihong
Spassieva, Stefka D.
Jucius, Thomas J.
Shultz, Leonard D.
Shick, H. Elizabeth
Macklin, Wendy B.
Hannun, Yusuf A.
Obeid, Lina M.
Ackerman, Susan L.
author_facet Zhao, Lihong
Spassieva, Stefka D.
Jucius, Thomas J.
Shultz, Leonard D.
Shick, H. Elizabeth
Macklin, Wendy B.
Hannun, Yusuf A.
Obeid, Lina M.
Ackerman, Susan L.
author_sort Zhao, Lihong
collection PubMed
description Sphingolipids, lipids with a common sphingoid base (also termed long chain base) backbone, play essential cellular structural and signaling functions. Alterations of sphingolipid levels have been implicated in many diseases, including neurodegenerative disorders. However, it remains largely unclear whether sphingolipid changes in these diseases are pathological events or homeostatic responses. Furthermore, how changes in sphingolipid homeostasis shape the progression of aging and neurodegeneration remains to be clarified. We identified two mouse strains, flincher (fln) and toppler (to), with spontaneous recessive mutations that cause cerebellar ataxia and Purkinje cell degeneration. Positional cloning demonstrated that these mutations reside in the Lass1 gene. Lass1 encodes (dihydro)ceramide synthase 1 (CerS1), which is highly expressed in neurons. Both fln and to mutations caused complete loss of CerS1 catalytic activity, which resulted in a reduction in sphingolipid biosynthesis in the brain and dramatic changes in steady-state levels of sphingolipids and sphingoid bases. In addition to Purkinje cell death, deficiency of CerS1 function also induced accumulation of lipofuscin with ubiquitylated proteins in many brain regions. Our results demonstrate clearly that ceramide biosynthesis deficiency can cause neurodegeneration and suggest a novel mechanism of lipofuscin formation, a common phenomenon that occurs during normal aging and in some neurodegenerative diseases.
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spelling pubmed-30981912011-05-27 A Deficiency of Ceramide Biosynthesis Causes Cerebellar Purkinje Cell Neurodegeneration and Lipofuscin Accumulation Zhao, Lihong Spassieva, Stefka D. Jucius, Thomas J. Shultz, Leonard D. Shick, H. Elizabeth Macklin, Wendy B. Hannun, Yusuf A. Obeid, Lina M. Ackerman, Susan L. PLoS Genet Research Article Sphingolipids, lipids with a common sphingoid base (also termed long chain base) backbone, play essential cellular structural and signaling functions. Alterations of sphingolipid levels have been implicated in many diseases, including neurodegenerative disorders. However, it remains largely unclear whether sphingolipid changes in these diseases are pathological events or homeostatic responses. Furthermore, how changes in sphingolipid homeostasis shape the progression of aging and neurodegeneration remains to be clarified. We identified two mouse strains, flincher (fln) and toppler (to), with spontaneous recessive mutations that cause cerebellar ataxia and Purkinje cell degeneration. Positional cloning demonstrated that these mutations reside in the Lass1 gene. Lass1 encodes (dihydro)ceramide synthase 1 (CerS1), which is highly expressed in neurons. Both fln and to mutations caused complete loss of CerS1 catalytic activity, which resulted in a reduction in sphingolipid biosynthesis in the brain and dramatic changes in steady-state levels of sphingolipids and sphingoid bases. In addition to Purkinje cell death, deficiency of CerS1 function also induced accumulation of lipofuscin with ubiquitylated proteins in many brain regions. Our results demonstrate clearly that ceramide biosynthesis deficiency can cause neurodegeneration and suggest a novel mechanism of lipofuscin formation, a common phenomenon that occurs during normal aging and in some neurodegenerative diseases. Public Library of Science 2011-05-19 /pmc/articles/PMC3098191/ /pubmed/21625621 http://dx.doi.org/10.1371/journal.pgen.1002063 Text en Zhao et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Zhao, Lihong
Spassieva, Stefka D.
Jucius, Thomas J.
Shultz, Leonard D.
Shick, H. Elizabeth
Macklin, Wendy B.
Hannun, Yusuf A.
Obeid, Lina M.
Ackerman, Susan L.
A Deficiency of Ceramide Biosynthesis Causes Cerebellar Purkinje Cell Neurodegeneration and Lipofuscin Accumulation
title A Deficiency of Ceramide Biosynthesis Causes Cerebellar Purkinje Cell Neurodegeneration and Lipofuscin Accumulation
title_full A Deficiency of Ceramide Biosynthesis Causes Cerebellar Purkinje Cell Neurodegeneration and Lipofuscin Accumulation
title_fullStr A Deficiency of Ceramide Biosynthesis Causes Cerebellar Purkinje Cell Neurodegeneration and Lipofuscin Accumulation
title_full_unstemmed A Deficiency of Ceramide Biosynthesis Causes Cerebellar Purkinje Cell Neurodegeneration and Lipofuscin Accumulation
title_short A Deficiency of Ceramide Biosynthesis Causes Cerebellar Purkinje Cell Neurodegeneration and Lipofuscin Accumulation
title_sort deficiency of ceramide biosynthesis causes cerebellar purkinje cell neurodegeneration and lipofuscin accumulation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3098191/
https://www.ncbi.nlm.nih.gov/pubmed/21625621
http://dx.doi.org/10.1371/journal.pgen.1002063
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