Mitchell J. Weiss
Affiliations: | Cell and Molecular Biology | University of Pennsylvania, Philadelphia, PA, United States |
Area:
Cell Biology, Molecular Biology, BiochemistryGoogle:
"Mitchell Weiss"Children
Sign in to add traineeYi Kong | grad student | 2004 | Penn |
David L. Stachura | grad student | 2006 | Penn |
Xiang Yu | grad student | 2003-2008 | Penn |
Eugene Khandros | grad student | 2012 | Penn |
Waihay J. Wong | grad student | 2012 | Penn |
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Publications
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Qin K, Huang P, Feng R, et al. (2022) Publisher Correction: Dual function NFI factors control fetal hemoglobin silencing in adult erythroid cells. Nature Genetics |
Qin K, Huang P, Feng R, et al. (2022) Dual function NFI factors control fetal hemoglobin silencing in adult erythroid cells. Nature Genetics |
Bhoopalan SV, Huang LJ, Weiss MJ. (2020) Erythropoietin regulation of red blood cell production: from bench to bedside and back. F1000research. 9 |
Demirci S, Zeng J, Wu Y, et al. (2020) BCL11A enhancer edited hematopoietic stem cells persist in rhesus monkeys without toxicity. The Journal of Clinical Investigation |
Xiang G, Keller CA, Heuston EF, et al. (2020) An integrative view of the regulatory and transcriptional landscapes in mouse hematopoiesis. Genome Research |
Hardison RC, Zhang Y, Keller CA, et al. (2019) Systematic integration of GATA transcription factors and epigenomes via IDEAS paints the regulatory landscape of hematopoietic cells. Iubmb Life |
Métais JY, Doerfler PA, Mayuranathan T, et al. (2019) Genome editing of HBG1 and HBG2 to induce fetal hemoglobin. Blood Advances. 3: 3379-3392 |
Lechauve C, Keith J, Khandros E, et al. (2019) The autophagy-activating kinase ULK1 mediates clearance of free α-globin in β-thalassemia. Science Translational Medicine. 11 |
Mamcarz E, Zhou S, Lockey T, et al. (2019) Lentiviral Gene Therapy Combined with Low-Dose Busulfan in Infants with SCID-X1. The New England Journal of Medicine. 380: 1525-1534 |
Bhoopalan SV, Han M, Ellis S, et al. (2019) Disease Modeling and Phenotype Rescue Using Inducible Pluripotent Stem Cells from Patients with Diamond-Blackfan Anemia Blood. 134: 2496-2496 |