In vivo base editing by a single i.v. vector injection for treatment of hemoglobinopathies
| dc.creator | Li 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.accessioned | 2023-01-31T08:50:07Z | |
| dc.date.available | 2023-01-31T08:50:07Z | |
| dc.date.issued | 2022 | |
| dc.identifier | 10.1172/jci.insight.162939 | |
| dc.identifier.issn | 23793708 | |
| dc.identifier.uri | http://hdl.handle.net/11615/75796 | |
| dc.description.abstract | Individuals 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.iso | en | en |
| dc.source | JCI Insight | en |
| dc.source.uri | https://www.scopus.com/inward/record.uri?eid=2-s2.0-85139571652&doi=10.1172%2fjci.insight.162939&partnerID=40&md5=dd7ad91aae6e8c7b1fad8bba867146b8 | |
| dc.subject | carmustine | en |
| dc.subject | CD34 antigen | en |
| dc.subject | helper dependent adenoviral vector | en |
| dc.subject | hemoglobin beta chain | en |
| dc.subject | hemoglobin F | en |
| dc.subject | hemoglobin gamma chain | en |
| dc.subject | methylated DNA protein cysteine methyltransferase | en |
| dc.subject | transcriptome | en |
| dc.subject | adenine | en |
| dc.subject | hemoglobin beta chain | en |
| dc.subject | hemoglobin F | en |
| dc.subject | hemoglobin gamma chain | en |
| dc.subject | adult | en |
| dc.subject | animal cell | en |
| dc.subject | animal experiment | en |
| dc.subject | animal model | en |
| dc.subject | Article | en |
| dc.subject | beta thalassemia | en |
| dc.subject | computer model | en |
| dc.subject | controlled study | en |
| dc.subject | erythrocyte | en |
| dc.subject | erythroid cell | en |
| dc.subject | ex vivo study | en |
| dc.subject | female | en |
| dc.subject | fetus | en |
| dc.subject | gene editing | en |
| dc.subject | gene mutation | en |
| dc.subject | hematopoietic stem cell | en |
| dc.subject | hemoglobinopathy | en |
| dc.subject | human | en |
| dc.subject | human cell | en |
| dc.subject | in vitro study | en |
| dc.subject | in vivo study | en |
| dc.subject | intravenous drug administration | en |
| dc.subject | nonhuman | en |
| dc.subject | off-target effect | en |
| dc.subject | phenotype | en |
| dc.subject | promoter region | en |
| dc.subject | protein expression | en |
| dc.subject | protein function | en |
| dc.subject | RNA sequencing | en |
| dc.subject | sickle cell anemia | en |
| dc.subject | subcutaneous drug administration | en |
| dc.subject | animal | en |
| dc.subject | beta thalassemia | en |
| dc.subject | CRISPR Cas system | en |
| dc.subject | gene editing | en |
| dc.subject | genetics | en |
| dc.subject | metabolism | en |
| dc.subject | mouse | en |
| dc.subject | procedures | en |
| dc.subject | sickle cell anemia | en |
| dc.subject | Adenine | en |
| dc.subject | Anemia, Sickle Cell | en |
| dc.subject | Animals | en |
| dc.subject | beta-Globins | en |
| dc.subject | beta-Thalassemia | en |
| dc.subject | CRISPR-Cas Systems | en |
| dc.subject | Fetal Hemoglobin | en |
| dc.subject | gamma-Globins | en |
| dc.subject | Gene Editing | en |
| dc.subject | Hemoglobinopathies | en |
| dc.subject | Humans | en |
| dc.subject | Mice | en |
| dc.subject | American Society for Clinical Investigation | en |
| dc.title | In vivo base editing by a single i.v. vector injection for treatment of hemoglobinopathies | en |
| dc.type | journalArticle | en |
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