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Induction of Fetal Hemoglobin In Vivo Mediated by a Synthetic γ-Globin Zinc Finger Activator

Sickle cell disease (SCD) and β-thalassemia patients are phenotypically normal if they carry compensatory hereditary persistence of fetal hemoglobin (HPFH) mutations that result in increased levels of fetal hemoglobin (HbF, γ-globin chains) in adulthood. Thus, research has focused on manipulating th...

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Autores principales: Costa, Flávia C., Fedosyuk, Halyna, Neades, Renee, de Los Rios, Johana Bravo, Barbas, Carlos F., Peterson, Kenneth R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3384929/
https://www.ncbi.nlm.nih.gov/pubmed/22778925
http://dx.doi.org/10.1155/2012/507894
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author Costa, Flávia C.
Fedosyuk, Halyna
Neades, Renee
de Los Rios, Johana Bravo
Barbas, Carlos F.
Peterson, Kenneth R.
author_facet Costa, Flávia C.
Fedosyuk, Halyna
Neades, Renee
de Los Rios, Johana Bravo
Barbas, Carlos F.
Peterson, Kenneth R.
author_sort Costa, Flávia C.
collection PubMed
description Sickle cell disease (SCD) and β-thalassemia patients are phenotypically normal if they carry compensatory hereditary persistence of fetal hemoglobin (HPFH) mutations that result in increased levels of fetal hemoglobin (HbF, γ-globin chains) in adulthood. Thus, research has focused on manipulating the reactivation of γ-globin gene expression during adult definitive erythropoiesis as the most promising therapy to treat these hemoglobinopathies. Artificial transcription factors (ATFs) are synthetic proteins designed to bind at a specific DNA sequence and modulate gene expression. The artificial zinc finger gg1-VP64 was designed to target the −117 region of the (A) γ-globin gene proximal promoter and activate expression of this gene. Previous studies demonstrated that HbF levels were increased in murine chemical inducer of dimerization (CID)-dependent bone marrow cells carrying a human β-globin locus yeast artificial chromosome (β-YAC) transgene and in CD34(+) erythroid progenitor cells from normal donors and β-thalassemia patients. Herein, we report that gg1-VP64 increased γ-globin gene expression in vivo, in peripheral blood samples from gg1-VP64 β-YAC double-transgenic (bigenic) mice. Our results demonstrate that ATFs function in an animal model to increase gene expression. Thus, this class of reagent may be an effective gene therapy for treatment of some inherited diseases.
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spelling pubmed-33849292012-07-09 Induction of Fetal Hemoglobin In Vivo Mediated by a Synthetic γ-Globin Zinc Finger Activator Costa, Flávia C. Fedosyuk, Halyna Neades, Renee de Los Rios, Johana Bravo Barbas, Carlos F. Peterson, Kenneth R. Anemia Research Article Sickle cell disease (SCD) and β-thalassemia patients are phenotypically normal if they carry compensatory hereditary persistence of fetal hemoglobin (HPFH) mutations that result in increased levels of fetal hemoglobin (HbF, γ-globin chains) in adulthood. Thus, research has focused on manipulating the reactivation of γ-globin gene expression during adult definitive erythropoiesis as the most promising therapy to treat these hemoglobinopathies. Artificial transcription factors (ATFs) are synthetic proteins designed to bind at a specific DNA sequence and modulate gene expression. The artificial zinc finger gg1-VP64 was designed to target the −117 region of the (A) γ-globin gene proximal promoter and activate expression of this gene. Previous studies demonstrated that HbF levels were increased in murine chemical inducer of dimerization (CID)-dependent bone marrow cells carrying a human β-globin locus yeast artificial chromosome (β-YAC) transgene and in CD34(+) erythroid progenitor cells from normal donors and β-thalassemia patients. Herein, we report that gg1-VP64 increased γ-globin gene expression in vivo, in peripheral blood samples from gg1-VP64 β-YAC double-transgenic (bigenic) mice. Our results demonstrate that ATFs function in an animal model to increase gene expression. Thus, this class of reagent may be an effective gene therapy for treatment of some inherited diseases. Hindawi Publishing Corporation 2012 2012-06-15 /pmc/articles/PMC3384929/ /pubmed/22778925 http://dx.doi.org/10.1155/2012/507894 Text en Copyright © 2012 Flávia C. Costa et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Costa, Flávia C.
Fedosyuk, Halyna
Neades, Renee
de Los Rios, Johana Bravo
Barbas, Carlos F.
Peterson, Kenneth R.
Induction of Fetal Hemoglobin In Vivo Mediated by a Synthetic γ-Globin Zinc Finger Activator
title Induction of Fetal Hemoglobin In Vivo Mediated by a Synthetic γ-Globin Zinc Finger Activator
title_full Induction of Fetal Hemoglobin In Vivo Mediated by a Synthetic γ-Globin Zinc Finger Activator
title_fullStr Induction of Fetal Hemoglobin In Vivo Mediated by a Synthetic γ-Globin Zinc Finger Activator
title_full_unstemmed Induction of Fetal Hemoglobin In Vivo Mediated by a Synthetic γ-Globin Zinc Finger Activator
title_short Induction of Fetal Hemoglobin In Vivo Mediated by a Synthetic γ-Globin Zinc Finger Activator
title_sort induction of fetal hemoglobin in vivo mediated by a synthetic γ-globin zinc finger activator
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3384929/
https://www.ncbi.nlm.nih.gov/pubmed/22778925
http://dx.doi.org/10.1155/2012/507894
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