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Persistent Fetal γ-Globin Expression in Adult Transgenic Mice following Deletion of Two Silencer Elements Located 3′ to the Human Aγ-Globin Gene
被引:0
|作者:
Maria Gazouli
Eleni Katsantoni
Theodoros Kosteas
Nicholas P. Anagnou
机构:
[1] University of Athens School of Medicine,Laboratory of Biology
[2] Biomedical Research Foundation of the Academy of Athens,Laboratory of Cell and Gene Therapy, Centre of Basic Research II
[3] Biomedical Research Foundation of the Academy of Athens,Hematology Division
[4] Institute of Molecular Biology and Biotechnology,undefined
[5] FORTH,undefined
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关键词:
Silencer;
Hereditary Persistence Of Fetal Hemoglobin (HPFH);
Cosmid Constructs;
Single-copy Lines;
Globin Gene Switching;
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摘要:
Natural deletions of the human γ-globin gene cluster lead to specific syndromes characterized by increased production of fetal hemoglobin in adult life and provide a useful model to delineate novel cis-acting elements involved in the developmental control of hemoglobin switching. A hypothesis accounting for these phenotypic features assumes that silencers located within the Aγ-to δ-gene region are deleted in hereditary persistence of fetal hemoglobin (HPFH) and δβ-thalassemias, leading to failure of switching. In the present study, we sought to clarify the in vivo role of two elements, termed Enh and F, located 3′ to the Aγ-globin, in silencing the fetal genes. To this end, we generated three transgenic lines using cosmid constructs containing the full length of the globin locus control region (LCR) linked to the 3.3-kb Aγ-gene lacking both the Enh and F elements. The Enh/F deletion resulted in high levels of Aγ-globin gene expression in adult mice in all single copy lines, whereas, the LCR-Aγ single copy lines which retain the Enh and F elements exhibited complete normal switching of the fetal Aγ-gene. Our study documents directly for the first time the in vivo role of these two gene-proximal negative regulatory elements in silencing the fetal globin gene in the perinatal period, and thus these data may permit their eventual exploitation in therapeutic approaches for thalassemias.
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页码:415 / 424
页数:9
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