TY - JOUR
T1 - Direct reprogramming of fibroblasts into antigen-presenting dendritic cells
AU - Rosa, Fábio F.
AU - Pires, Cristiana F.
AU - Kurochkin, Ilia
AU - Ferreira, Alexandra G.
AU - Gomes, Andreia M.
AU - Palma, Luís G.
AU - Shaiv, Kritika
AU - Solanas, Laura
AU - Azenha, Cláudia
AU - Papatsenko, Dmitri
AU - Schulz, Oliver
AU - Sousa, Caetano Reis E.
AU - Pereira, Carlos Filipe
N1 - Publisher Copyright:
Copyright © 2018 The Authors.
PY - 2018
Y1 - 2018
N2 - Ectopic expression of transcription factors has been used to reprogram differentiated somatic cells toward pluripotency or to directly reprogram them to other somatic cell lineages. This concept has been explored in the context of regenerative medicine. Here, we set out to generate dendritic cells (DCs) capable of presenting antigens from mouse and human fibroblasts. By screening combinations of 18 transcription factors that are expressed in DCs, we have identified PU.1, IRF8, and BATF3 transcription factors as being sufficient to reprogram both mouse and human fibroblasts to induced DCs (iDCs). iDCs acquire a conventional DC type 1–like transcriptional program, with features of interferon-induced maturation. iDCs secrete inflammatory cytokines and have the ability to engulf, process, and present antigens to T cells. Furthermore, we demonstrate that murine iDCs generated here were able to cross-present antigens to CD8+ T cells. Our reprogramming system should facilitate better understanding of DC specification programs and serve as a platform for the development of patient-specific DCs for immunotherapy.
AB - Ectopic expression of transcription factors has been used to reprogram differentiated somatic cells toward pluripotency or to directly reprogram them to other somatic cell lineages. This concept has been explored in the context of regenerative medicine. Here, we set out to generate dendritic cells (DCs) capable of presenting antigens from mouse and human fibroblasts. By screening combinations of 18 transcription factors that are expressed in DCs, we have identified PU.1, IRF8, and BATF3 transcription factors as being sufficient to reprogram both mouse and human fibroblasts to induced DCs (iDCs). iDCs acquire a conventional DC type 1–like transcriptional program, with features of interferon-induced maturation. iDCs secrete inflammatory cytokines and have the ability to engulf, process, and present antigens to T cells. Furthermore, we demonstrate that murine iDCs generated here were able to cross-present antigens to CD8+ T cells. Our reprogramming system should facilitate better understanding of DC specification programs and serve as a platform for the development of patient-specific DCs for immunotherapy.
UR - https://www.scopus.com/pages/publications/85058594969
U2 - 10.1126/sciimmunol.aau4292
DO - 10.1126/sciimmunol.aau4292
M3 - Article
C2 - 30530727
AN - SCOPUS:85058594969
SN - 2470-9468
VL - 3
JO - Science immunology
JF - Science immunology
IS - 30
M1 - eaau4292
ER -