TY - JOUR
T1 - Stable and functional lymphoid reconstitution in artemis-deficient mice following lentiviral artemis gene transfer into hematopoietic stem cells
AU - Benjelloun, Fatine
AU - Garrigue, Alexandrine
AU - Demerens-de Chappedelaine, Corinne
AU - Soulas-Sprauel, Pauline
AU - Malassis-Séris, Michele
AU - Stockholm, Daniel
AU - Hauer, Julia
AU - Blondeau, Johanna
AU - Rivière, Julie
AU - Lim, Annick
AU - Le Lorc'h, Marc
AU - Romana, Serge
AU - Brousse, Nicole
AU - Pâques, Frederique
AU - Galy, Anne
AU - Charneau, Pierre
AU - Fischer, Alain
AU - de Villartay, Jean Pierre
AU - Cavazzana-Calvo, Marina
N1 - Funding Information:
We thank (i) Sylvia Bruneau (Cellectis SA, France) for the construct used for generating Artemis-deficient mice; (ii) Didier Trono (Institute for Research in Biomedicine, Switzerland) for providing the sequences of the primer and probes used in the quantitative PCR of the lentiviral vector; (iii) Philippe Hajdari (Généthon, France), Philippe Souk (Pasteur, France), David Puyraimond, Gerard Pivers, P, and Sylvie Nusbaum (Necker, France) for their technical assistance; (iv) Isabelle Andre-Schmutz, Chantal Lagresle-Peyrou, Salima Hacein-Bey-Abina, Isabelle Radford (Necker, France), Bernard Dutrillaux (Muséum National d'Histoire Naturelle, France), and personnel at Brigitte Schlegelberger's laboratories (Hannover Medical School, Germany) for helpful discussions; and (v) Nicolas Stadler's team (Necker, Paris) for managing the maintenance of the animals. This work was funded by grants from Institut National de la Santé et de la Recherche (INSERM), the Association Française contre les Myopathies (AFM) contract GAT0203, the Consortium National de Recherche en Génomique, the EC contract QLK3-CT-1999-00859, the Consert contract no. 005242, the Inherinet contract QLK3-CT-2001-00427, the Agence Nationale de la Recherche grant 05-MRAR-004, and a grant from Amgen-France (M. de Garidel and C. Cailliot). F.B.'s fellowship was provided by the AFM. P.S.S. was supported by INSERM, Electricité de France, and the Fondation Singer Polignac. J.H. is a fellow of the Deutsche Akademie der Naturforscher Leopoldina (BMBF-LPD 9901/8-149).
PY - 2008/8
Y1 - 2008/8
N2 - Patients with mutations in the Artemis gene display a complete absence of T- and B lymphocytes, together with increased cellular radiosensitivity; this leads to a radiosensitive severe combined immunodeficiency (RS-SCID). Allogenic hematopoietic stem-cell (HSC) transplantation is only partially successful in the absence of an human leukocyte antigen-genoidentical donor, and this has prompted a search for alternative therapeutic approaches such as gene therapy. In this study, a self-inactivated lentiviral vector expressing Artemis was used to complement the Artemis knockout mouse (Art-/-). Transplantation of Artemis-transduced HSCs into irradiated Art-/- mice restored a stable (over a 15-month period of follow-up) and functional T- and cell repertoire that was comparable to that of control mice. The success of secondary transplantations demonstrated that the HSCs had been transduced. One of thirteen mice developed a thymoma 6 months after gene therapy. Although thymic cells were seen to be carrying two lentiviral integration sites, there was no evidence of lentivirus-driven oncogene activation. The Art-/- mice were found to be prone to develop T-cell lymphomas, either spontaneously or after irradiation. These data indicate that the observed lymphoproliferation was probably the consequence of the chromosomal instability associated with the Artemis-deficient background. As a whole, our work provides a basis for supporting the gene therapy approach in Artemis-deficient SCID.
AB - Patients with mutations in the Artemis gene display a complete absence of T- and B lymphocytes, together with increased cellular radiosensitivity; this leads to a radiosensitive severe combined immunodeficiency (RS-SCID). Allogenic hematopoietic stem-cell (HSC) transplantation is only partially successful in the absence of an human leukocyte antigen-genoidentical donor, and this has prompted a search for alternative therapeutic approaches such as gene therapy. In this study, a self-inactivated lentiviral vector expressing Artemis was used to complement the Artemis knockout mouse (Art-/-). Transplantation of Artemis-transduced HSCs into irradiated Art-/- mice restored a stable (over a 15-month period of follow-up) and functional T- and cell repertoire that was comparable to that of control mice. The success of secondary transplantations demonstrated that the HSCs had been transduced. One of thirteen mice developed a thymoma 6 months after gene therapy. Although thymic cells were seen to be carrying two lentiviral integration sites, there was no evidence of lentivirus-driven oncogene activation. The Art-/- mice were found to be prone to develop T-cell lymphomas, either spontaneously or after irradiation. These data indicate that the observed lymphoproliferation was probably the consequence of the chromosomal instability associated with the Artemis-deficient background. As a whole, our work provides a basis for supporting the gene therapy approach in Artemis-deficient SCID.
UR - https://www.scopus.com/pages/publications/48349132972
U2 - 10.1038/mt.2008.118
DO - 10.1038/mt.2008.118
M3 - Article
C2 - 18560421
AN - SCOPUS:48349132972
SN - 1525-0016
VL - 16
SP - 1490
EP - 1499
JO - Molecular Therapy
JF - Molecular Therapy
IS - 8
ER -