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Sphingolipid dysregulation due to lack of functional KDSR impairs proplatelet formation causing thrombocytopenia

Sphingolipids are fundamental to membrane trafficking, apoptosis, and cell differentiation and proliferation. KDSR or 3-keto-dihydrosphingosine reductase is an essential enzyme for de novo sphingolipid synthesis, and pathogenic mutations in KDSR result in the severe skin disorder erythrokeratodermia...

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Autores principales: Bariana, Tadbir K., Labarque, Veerle, Heremans, Jessica, Thys, Chantal, De Reys, Mara, Greene, Daniel, Jenkins, Benjamin, Grassi, Luigi, Seyres, Denis, Burden, Frances, Whitehorn, Deborah, Shamardina, Olga, Papadia, Sofia, Gomez, Keith, BioResource, NIHR, Van Geet, Chris, Koulman, Albert, Ouwehand, Willem H., Ghevaert, Cedric, Frontini, Mattia, Turro, Ernest, Freson, Kathleen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ferrata Storti Foundation 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6518879/
https://www.ncbi.nlm.nih.gov/pubmed/30467204
http://dx.doi.org/10.3324/haematol.2018.204784
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author Bariana, Tadbir K.
Labarque, Veerle
Heremans, Jessica
Thys, Chantal
De Reys, Mara
Greene, Daniel
Jenkins, Benjamin
Grassi, Luigi
Seyres, Denis
Burden, Frances
Whitehorn, Deborah
Shamardina, Olga
Papadia, Sofia
Gomez, Keith
BioResource, NIHR
Van Geet, Chris
Koulman, Albert
Ouwehand, Willem H.
Ghevaert, Cedric
Frontini, Mattia
Turro, Ernest
Freson, Kathleen
author_facet Bariana, Tadbir K.
Labarque, Veerle
Heremans, Jessica
Thys, Chantal
De Reys, Mara
Greene, Daniel
Jenkins, Benjamin
Grassi, Luigi
Seyres, Denis
Burden, Frances
Whitehorn, Deborah
Shamardina, Olga
Papadia, Sofia
Gomez, Keith
BioResource, NIHR
Van Geet, Chris
Koulman, Albert
Ouwehand, Willem H.
Ghevaert, Cedric
Frontini, Mattia
Turro, Ernest
Freson, Kathleen
author_sort Bariana, Tadbir K.
collection PubMed
description Sphingolipids are fundamental to membrane trafficking, apoptosis, and cell differentiation and proliferation. KDSR or 3-keto-dihydrosphingosine reductase is an essential enzyme for de novo sphingolipid synthesis, and pathogenic mutations in KDSR result in the severe skin disorder erythrokeratodermia variabilis et progressiva-4. Four of the eight reported cases also had thrombocytopenia but the underlying mechanism has remained unexplored. Here we expand upon the phenotypic spectrum of KDSR deficiency with studies in two siblings with novel compound heterozygous variants associated with thrombocytopenia, anemia, and minimal skin involvement. We report a novel phenotype of progressive juvenile myelofibrosis in the propositus, with spontaneous recovery of anemia and thrombocytopenia in the first decade of life. Examination of bone marrow biopsies showed megakaryocyte hyperproliferation and dysplasia. Megakaryocytes obtained by culture of CD34(+) stem cells confirmed hyperproliferation and showed reduced proplatelet formation. The effect of KDSR insufficiency on the sphingolipid profile was unknown, and was explored in vivo and in vitro by a broad metabolomics screen that indicated activation of an in vivo compensatory pathway that leads to normalization of downstream metabolites such as ceramide. Differentiation of propositus-derived induced pluripotent stem cells to megakaryocytes followed by expression of functional KDSR showed correction of the aberrant cellular and biochemical phenotypes, corroborating the critical role of KDSR in proplatelet formation. Finally, Kdsr depletion in zebrafish recapitulated the thrombocytopenia and showed biochemical changes similar to those observed in the affected siblings. These studies support an important role for sphingolipids as regulators of cytoskeletal organization during megakaryopoiesis and proplatelet formation.
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spelling pubmed-65188792019-05-24 Sphingolipid dysregulation due to lack of functional KDSR impairs proplatelet formation causing thrombocytopenia Bariana, Tadbir K. Labarque, Veerle Heremans, Jessica Thys, Chantal De Reys, Mara Greene, Daniel Jenkins, Benjamin Grassi, Luigi Seyres, Denis Burden, Frances Whitehorn, Deborah Shamardina, Olga Papadia, Sofia Gomez, Keith BioResource, NIHR Van Geet, Chris Koulman, Albert Ouwehand, Willem H. Ghevaert, Cedric Frontini, Mattia Turro, Ernest Freson, Kathleen Haematologica Article Sphingolipids are fundamental to membrane trafficking, apoptosis, and cell differentiation and proliferation. KDSR or 3-keto-dihydrosphingosine reductase is an essential enzyme for de novo sphingolipid synthesis, and pathogenic mutations in KDSR result in the severe skin disorder erythrokeratodermia variabilis et progressiva-4. Four of the eight reported cases also had thrombocytopenia but the underlying mechanism has remained unexplored. Here we expand upon the phenotypic spectrum of KDSR deficiency with studies in two siblings with novel compound heterozygous variants associated with thrombocytopenia, anemia, and minimal skin involvement. We report a novel phenotype of progressive juvenile myelofibrosis in the propositus, with spontaneous recovery of anemia and thrombocytopenia in the first decade of life. Examination of bone marrow biopsies showed megakaryocyte hyperproliferation and dysplasia. Megakaryocytes obtained by culture of CD34(+) stem cells confirmed hyperproliferation and showed reduced proplatelet formation. The effect of KDSR insufficiency on the sphingolipid profile was unknown, and was explored in vivo and in vitro by a broad metabolomics screen that indicated activation of an in vivo compensatory pathway that leads to normalization of downstream metabolites such as ceramide. Differentiation of propositus-derived induced pluripotent stem cells to megakaryocytes followed by expression of functional KDSR showed correction of the aberrant cellular and biochemical phenotypes, corroborating the critical role of KDSR in proplatelet formation. Finally, Kdsr depletion in zebrafish recapitulated the thrombocytopenia and showed biochemical changes similar to those observed in the affected siblings. These studies support an important role for sphingolipids as regulators of cytoskeletal organization during megakaryopoiesis and proplatelet formation. Ferrata Storti Foundation 2019-05 /pmc/articles/PMC6518879/ /pubmed/30467204 http://dx.doi.org/10.3324/haematol.2018.204784 Text en Copyright© 2019 Ferrata Storti Foundation Material published in Haematologica is covered by copyright. All rights are reserved to the Ferrata Storti Foundation. Use of published material is allowed under the following terms and conditions: https://creativecommons.org/licenses/by-nc/4.0/legalcode. Copies of published material are allowed for personal or internal use. Sharing published material for non-commercial purposes is subject to the following conditions: https://creativecommons.org/licenses/by-nc/4.0/legalcode, sect. 3. Reproducing and sharing published material for commercial purposes is not allowed without permission in writing from the publisher.
spellingShingle Article
Bariana, Tadbir K.
Labarque, Veerle
Heremans, Jessica
Thys, Chantal
De Reys, Mara
Greene, Daniel
Jenkins, Benjamin
Grassi, Luigi
Seyres, Denis
Burden, Frances
Whitehorn, Deborah
Shamardina, Olga
Papadia, Sofia
Gomez, Keith
BioResource, NIHR
Van Geet, Chris
Koulman, Albert
Ouwehand, Willem H.
Ghevaert, Cedric
Frontini, Mattia
Turro, Ernest
Freson, Kathleen
Sphingolipid dysregulation due to lack of functional KDSR impairs proplatelet formation causing thrombocytopenia
title Sphingolipid dysregulation due to lack of functional KDSR impairs proplatelet formation causing thrombocytopenia
title_full Sphingolipid dysregulation due to lack of functional KDSR impairs proplatelet formation causing thrombocytopenia
title_fullStr Sphingolipid dysregulation due to lack of functional KDSR impairs proplatelet formation causing thrombocytopenia
title_full_unstemmed Sphingolipid dysregulation due to lack of functional KDSR impairs proplatelet formation causing thrombocytopenia
title_short Sphingolipid dysregulation due to lack of functional KDSR impairs proplatelet formation causing thrombocytopenia
title_sort sphingolipid dysregulation due to lack of functional kdsr impairs proplatelet formation causing thrombocytopenia
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6518879/
https://www.ncbi.nlm.nih.gov/pubmed/30467204
http://dx.doi.org/10.3324/haematol.2018.204784
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