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dc.creatorLi C., Georgakopoulou A., Newby G.A., Everette K.A., Nizamis E., Paschoudi K., Vlachaki E., Gil S., Anderson A.K., Koob T., Huang L., Wang H., Kiem H.-P., Liu D.R., Yannaki E., Lieber A.en
dc.date.accessioned2023-01-31T08:50:07Z
dc.date.available2023-01-31T08:50:07Z
dc.date.issued2022
dc.identifier10.1172/jci.insight.162939
dc.identifier.issn23793708
dc.identifier.urihttp://hdl.handle.net/11615/75796
dc.description.abstractIndividuals with β-thalassemia or sickle cell disease and hereditary persistence of fetal hemoglobin (HPFH) possessing 30% fetal hemoglobin (HbF) appear to be symptom free. Here, we used a nonintegrating HDAd5/35++ vector expressing a highly efficient and accurate version of an adenine base editor (ABE8e) to install, in vivo, a -113 A>G HPFH mutation in the γ-globin promoters in healthy CD46/β-YAC mice carrying the human β-globin locus. Our in vivo hematopoietic stem cell (HSC) editing/selection strategy involves only s.c. and i.v. injections and does not require myeloablation and HSC transplantation. In vivo HSC base editing in CD46/β-YAC mice resulted in > 60% -113 A>G conversion, with 30% γ-globin of β-globin expressed in 70% of erythrocytes. Importantly, no off-target editing at sites predicted by CIRCLE-Seq or in silico was detected. Furthermore, no critical alterations in the transcriptome of in vivo edited mice were found by RNA-Seq. In vitro, in HSCs from β-thalassemia and patients with sickle cell disease, transduction with the base editor vector mediated efficient -113 A>G conversion and reactivation of γ-globin expression with subsequent phenotypic correction of erythroid cells. Because our in vivo base editing strategy is safe and technically simple, it has the potential for clinical application in developing countries where hemoglobinopathies are prevalent. Copyright: © 2022, Li et al.en
dc.language.isoenen
dc.sourceJCI Insighten
dc.source.urihttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85139571652&doi=10.1172%2fjci.insight.162939&partnerID=40&md5=dd7ad91aae6e8c7b1fad8bba867146b8
dc.subjectcarmustineen
dc.subjectCD34 antigenen
dc.subjecthelper dependent adenoviral vectoren
dc.subjecthemoglobin beta chainen
dc.subjecthemoglobin Fen
dc.subjecthemoglobin gamma chainen
dc.subjectmethylated DNA protein cysteine methyltransferaseen
dc.subjecttranscriptomeen
dc.subjectadenineen
dc.subjecthemoglobin beta chainen
dc.subjecthemoglobin Fen
dc.subjecthemoglobin gamma chainen
dc.subjectadulten
dc.subjectanimal cellen
dc.subjectanimal experimenten
dc.subjectanimal modelen
dc.subjectArticleen
dc.subjectbeta thalassemiaen
dc.subjectcomputer modelen
dc.subjectcontrolled studyen
dc.subjecterythrocyteen
dc.subjecterythroid cellen
dc.subjectex vivo studyen
dc.subjectfemaleen
dc.subjectfetusen
dc.subjectgene editingen
dc.subjectgene mutationen
dc.subjecthematopoietic stem cellen
dc.subjecthemoglobinopathyen
dc.subjecthumanen
dc.subjecthuman cellen
dc.subjectin vitro studyen
dc.subjectin vivo studyen
dc.subjectintravenous drug administrationen
dc.subjectnonhumanen
dc.subjectoff-target effecten
dc.subjectphenotypeen
dc.subjectpromoter regionen
dc.subjectprotein expressionen
dc.subjectprotein functionen
dc.subjectRNA sequencingen
dc.subjectsickle cell anemiaen
dc.subjectsubcutaneous drug administrationen
dc.subjectanimalen
dc.subjectbeta thalassemiaen
dc.subjectCRISPR Cas systemen
dc.subjectgene editingen
dc.subjectgeneticsen
dc.subjectmetabolismen
dc.subjectmouseen
dc.subjectproceduresen
dc.subjectsickle cell anemiaen
dc.subjectAdenineen
dc.subjectAnemia, Sickle Cellen
dc.subjectAnimalsen
dc.subjectbeta-Globinsen
dc.subjectbeta-Thalassemiaen
dc.subjectCRISPR-Cas Systemsen
dc.subjectFetal Hemoglobinen
dc.subjectgamma-Globinsen
dc.subjectGene Editingen
dc.subjectHemoglobinopathiesen
dc.subjectHumansen
dc.subjectMiceen
dc.subjectAmerican Society for Clinical Investigationen
dc.titleIn vivo base editing by a single i.v. vector injection for treatment of hemoglobinopathiesen
dc.typejournalArticleen


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