Donor insertion into CX3CR1 allows epigenetic modulation of a constitutive promoter on hematopoietic stem cells and its activation upon myeloid differentiation
Metadatos
Afficher la notice complèteAuteur
Ramos Hernández, Iris; Fuster-García, Carla; Aguilar González, Araceli; Lozano-Vinagre, María L.; Guenechea-Amurrio, Guillermo; Sánchez-Luque, Franscisco J.; Gonçalves, Manuel A.F.V.; Cathomen, Toni; Muñoz, Pilar; Molina-Estévez, Francisco Javier; Martín Molina, FranciscoEditorial
Oxford University Press
Date
2025-04-29Referencia bibliográfica
Iris Ramos-Hernández et al. Donor insertion into CX3CR1 allows epigenetic modulation of a constitutive promoter on hematopoietic stem cells and its activation upon myeloid differentiation, Nucleic Acids Research, Volume 53, Issue 8, 8 May 2025, gkaf344, https://doi.org/10.1093/nar/gkaf344
Patrocinador
Fondo Europeo de Desarrollo Regional (FEDER), NextGenerationEU, Instituto de Salud Carlos III (ISCIII): [PI18/00337, PI21/00298, PI21/00875]; RICORS-TerAv [RD21/ 0017/0004; RD21/0017/0027]; FI19/00163; FEDER/European Cohesion Fund (FSE) Andalucía [PECART-0031-2020]; Junta de Andalucía PEER-0286-2019, EMERGIA20_00049; Pompe Competitive Research SPARK-2022-002; Ministerio de Ciencia e innovación (MICIN) PID2021-125077OB-C22, PLEC2021-008094; Centro para el Desarrollo Tecnológico Industrial (CDTI), European Union-Next Generation EU [00123009/SNEO-20191072, PMPTA22/00060]; Spanish National Research Agency [AEI; RYC2021-031920-I, CNS2022-136033]; Horizon Europe Framework Program X-PAND 101070950; European Cooperation in Science and Technology (COST) [GeneHumdi-CA21113]; Instituto de Salud Carlos III (ISCIII) [RD21/ 0017/0004]; Universidad de Granada/CBUARésumé
To improve ex vivo gene therapy strategies involving hematopoietic stem and progenitor cells (HSPCs), we propose a novel knock-in strategy
(named KI-Ep) aiming to achieve transgene regulation of the inserted cassette through the acquisition of naturally occurring epigenetic marks.
Based on this hypothesis, we selected CX3CR1 (a myeloid-specific gene presenting a poised histone signature on primitive HSPCs) as safe
harbor to generate KI-Ep HSPCs. We demonstrated that, unlike the expression pattern achieved with lentiviral vectors (LVs), the insertion of
a constitutive expression cassette into the intron 1 of the CX3CR1 locus (CX3CR1-I) in HSPCs resulted in very low expression levels in the
more primitive HSPCs but, crucially, strong expression in HSPC-differentiated populations (especially myeloid cells), both in vitro and in vivo.
Furthermore, we showed that the promoter of the expression cassette inserted into CX3CR1-I acquired epigenetic marks associated with
poised genes during the HSPC stage. These marks transitioned to activated histone states upon KI-Ep HSPCs differentiation. In summary, here,
we introduce the KI-Ep concept which enables the epigenetic modulation of the inserted transgene during the HSPCs stem cell stages and its
subsequent activation upon differentiation.





