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Nature|October 19, 1995
Defective activation and survival of T cells lacking the Ets-1 transcription factorN Muthusamy, K Barton, J M LeidenJournal of Virology|January 1, 1980
Identification of the herpes simplex virus DNA sequences present in six herpes simplex virus thymidine kinase-transformed mouse cell linesJ M Leiden, N Frenkel, F RappJournal of Virology|November 1, 1976
Herpes simplex virus gene expression in transformed cells. I. Regulation of the viral thymidine kinase gene in transformed L cells by products of superinfecting virusJ M Leiden, R Buttyan, P G SpearMolecular Medicine Today|April 1, 1996
Muscle-based gene therapy: realistic possibilities for the futureE C Svensson, S K Tripathy, J M LeidenIARC Scientific Publications|January 1, 1978
Mapping of the herpes simplex virus DNA sequences in three herpes simplex virus thymidine kinase-transformed cell linesJ M Leiden, N Frenkel, D Polacek, et al.The Journal of Experimental Medicine|January 5, 1999
An essential role for nuclear factor kappaB in promoting double positive thymocyte apoptosisT Hettmann, J DiDonato, M Karin, et al.Immunogenetics|January 1, 1986
The complete primary structure of the T-cell receptor genes from an alloreactive cytotoxic human T-lymphocyte cloneJ M Leiden, J D Fraser, J L StromingerJournal of Virology|May 1, 1997
Physical interactions between Ets and NF-kappaB/NFAT proteins play an important role in their cooperative activation of the human immunodeficiency virus enhancer in T cellsA G Bassuk, R T Anandappa, J M LeidenScience (New York, N.Y.)|September 26, 1997
LKLF: A transcriptional regulator of single-positive T cell quiescence and survivalC T Kuo, M L Veselits, J M LeidenNature Immunology|July 31, 2001
Transcription factor LKLF is sufficient to program T cell quiescence via a c-Myc-dependent pathwayA F Buckley, C T Kuo, J M LeidenPageof 37