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Loss of E protein transcription factors E2A and HEB delays memory-precursor formation during the CD8+ T-cell immune response.


ABSTRACT: The transcription factors E2A and HEB (members of the E protein family) have been shown to play essential roles in lymphocyte development, while their negative regulators, the Id proteins, have been implicated in both lymphocyte development and in the CD8(+) T-cell immune response. Here, we show that E proteins also influence CD8(+) T cells responding to infection. E protein expression was upregulated by CD8(+) T cells during the early stages of infection and increased E protein DNA-binding activity could be detected upon TCR stimulation. Deficiency in the E proteins, E2A and HEB, led to increased frequency of terminally differentiated effector KLRG1(hi) CD8(+) T cells in mice during infection, and decreased generation of longer-lived memory-precursor cells during the immune response. These data suggest a model whereby E protein transcription factor activity favors rapid memory-precursor T-cell formation while their negative regulators, Id2 and Id3, are both required for robust effector CD8(+) T-cell response during infection.

SUBMITTER: D'Cruz LM 

PROVIDER: S-EPMC3702188 | biostudies-literature | 2012 Aug

REPOSITORIES: biostudies-literature

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Loss of E protein transcription factors E2A and HEB delays memory-precursor formation during the CD8+ T-cell immune response.

D'Cruz Louise M LM   Lind Kristin Camfield KC   Wu Bei Bei BB   Fujimoto Jessica K JK   Goldrath Ananda W AW  

European journal of immunology 20120801 8


The transcription factors E2A and HEB (members of the E protein family) have been shown to play essential roles in lymphocyte development, while their negative regulators, the Id proteins, have been implicated in both lymphocyte development and in the CD8(+) T-cell immune response. Here, we show that E proteins also influence CD8(+) T cells responding to infection. E protein expression was upregulated by CD8(+) T cells during the early stages of infection and increased E protein DNA-binding a  ...[more]

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