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WAS Promoter-Driven Lentiviral Vectors Mimic Closely the Lopsided WASP Expression during Megakaryocytic Differentiation

Transplant of gene-modified autologous hematopoietic progenitors cells has emerged as a new therapeutic approach for Wiskott-Aldrich syndrome (WAS), a primary immunodeficiency with microthrombocytopenia and abnormal lymphoid and myeloid functions. Despite the clinical benefits obtained in ongoing cl...

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Autores principales: Muñoz, Pilar, Tristán-Manzano, María, Sánchez-Gilabert, Almudena, Santilli, Giorgia, Galy, Anne, Thrasher, Adrian J., Martin, Francisco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Gene & Cell Therapy 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7558809/
https://www.ncbi.nlm.nih.gov/pubmed/33102615
http://dx.doi.org/10.1016/j.omtm.2020.09.006
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author Muñoz, Pilar
Tristán-Manzano, María
Sánchez-Gilabert, Almudena
Santilli, Giorgia
Galy, Anne
Thrasher, Adrian J.
Martin, Francisco
author_facet Muñoz, Pilar
Tristán-Manzano, María
Sánchez-Gilabert, Almudena
Santilli, Giorgia
Galy, Anne
Thrasher, Adrian J.
Martin, Francisco
author_sort Muñoz, Pilar
collection PubMed
description Transplant of gene-modified autologous hematopoietic progenitors cells has emerged as a new therapeutic approach for Wiskott-Aldrich syndrome (WAS), a primary immunodeficiency with microthrombocytopenia and abnormal lymphoid and myeloid functions. Despite the clinical benefits obtained in ongoing clinical trials, platelet restoration is suboptimal. The incomplete restoration of platelets in these patients can be explained either by a low number of corrected cells or by insufficient or inadequate WASP expression during megakaryocyte differentiation and/or in platelets. We therefore used in vitro models to study the endogenous WASP expression pattern during megakaryocytic differentiation and compared it with the expression profiles achieved by different therapeutic lentiviral vectors (LVs) driving WAS cDNA through different regions of the WAS promoter. Our data showed that all WAS promoter-driven LVs mimic very closely the endogenous WAS expression kinetic during megakaryocytic differentiation. However, LVs harboring the full-length (1.6-kb) WAS-proximal promoter (WW1.6) or a combination of the WAS alternative and proximal promoters (named AW) had the best behavior. Finally, all WAS-driven LVs restored the WAS knockout (WASKO) mice phenotype and functional defects of hematopoietic stem and progenitor cells (HSPCs) from a WAS patient with similar efficiency. In summary, our data back up the use of WW1.6 and AW LVs as physiological gene transfer tools for WAS therapy.
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spelling pubmed-75588092020-10-22 WAS Promoter-Driven Lentiviral Vectors Mimic Closely the Lopsided WASP Expression during Megakaryocytic Differentiation Muñoz, Pilar Tristán-Manzano, María Sánchez-Gilabert, Almudena Santilli, Giorgia Galy, Anne Thrasher, Adrian J. Martin, Francisco Mol Ther Methods Clin Dev Original Article Transplant of gene-modified autologous hematopoietic progenitors cells has emerged as a new therapeutic approach for Wiskott-Aldrich syndrome (WAS), a primary immunodeficiency with microthrombocytopenia and abnormal lymphoid and myeloid functions. Despite the clinical benefits obtained in ongoing clinical trials, platelet restoration is suboptimal. The incomplete restoration of platelets in these patients can be explained either by a low number of corrected cells or by insufficient or inadequate WASP expression during megakaryocyte differentiation and/or in platelets. We therefore used in vitro models to study the endogenous WASP expression pattern during megakaryocytic differentiation and compared it with the expression profiles achieved by different therapeutic lentiviral vectors (LVs) driving WAS cDNA through different regions of the WAS promoter. Our data showed that all WAS promoter-driven LVs mimic very closely the endogenous WAS expression kinetic during megakaryocytic differentiation. However, LVs harboring the full-length (1.6-kb) WAS-proximal promoter (WW1.6) or a combination of the WAS alternative and proximal promoters (named AW) had the best behavior. Finally, all WAS-driven LVs restored the WAS knockout (WASKO) mice phenotype and functional defects of hematopoietic stem and progenitor cells (HSPCs) from a WAS patient with similar efficiency. In summary, our data back up the use of WW1.6 and AW LVs as physiological gene transfer tools for WAS therapy. American Society of Gene & Cell Therapy 2020-09-16 /pmc/articles/PMC7558809/ /pubmed/33102615 http://dx.doi.org/10.1016/j.omtm.2020.09.006 Text en © 2020 The Author(s) 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 Original Article
Muñoz, Pilar
Tristán-Manzano, María
Sánchez-Gilabert, Almudena
Santilli, Giorgia
Galy, Anne
Thrasher, Adrian J.
Martin, Francisco
WAS Promoter-Driven Lentiviral Vectors Mimic Closely the Lopsided WASP Expression during Megakaryocytic Differentiation
title WAS Promoter-Driven Lentiviral Vectors Mimic Closely the Lopsided WASP Expression during Megakaryocytic Differentiation
title_full WAS Promoter-Driven Lentiviral Vectors Mimic Closely the Lopsided WASP Expression during Megakaryocytic Differentiation
title_fullStr WAS Promoter-Driven Lentiviral Vectors Mimic Closely the Lopsided WASP Expression during Megakaryocytic Differentiation
title_full_unstemmed WAS Promoter-Driven Lentiviral Vectors Mimic Closely the Lopsided WASP Expression during Megakaryocytic Differentiation
title_short WAS Promoter-Driven Lentiviral Vectors Mimic Closely the Lopsided WASP Expression during Megakaryocytic Differentiation
title_sort was promoter-driven lentiviral vectors mimic closely the lopsided wasp expression during megakaryocytic differentiation
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7558809/
https://www.ncbi.nlm.nih.gov/pubmed/33102615
http://dx.doi.org/10.1016/j.omtm.2020.09.006
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