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November 12, 1999Science648 citations

Defective Thymocyte Maturation in p44 MAP Kinase (Erk 1) Knockout Mice

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GPGilles PagèsSGSandrine GuérinDGDominique Grall

Key Points

  • The study investigates the role of p44 MAPK in thymocyte maturation and differentiation.
  • Generated p44 MAPK-deficient mice using homologous recombination in embryonic stem cells.
  • Evaluated thymocyte development and proliferation in response to activation.
  • Thymocyte maturation beyond CD4+CD8+ stage decreased by 50% in p44 MAPK-/- mice.
  • High levels of T cell receptor expression (CD3high) also reduced in p44 MAPK-/- thymocytes.
  • Proliferation of p44 MAPK-/- thymocytes in response to T cell receptor activation was severely reduced.

Abstract

The p42 and p44 mitogen-activated protein kinases (MAPKs), also called Erk2 and Erk1, respectively, have been implicated in proliferation as well as in differentiation programs. The specific role of the p44 MAPK isoform in the whole animal was evaluated by generation of p44 MAPK-deficient mice by homologous recombination in embryonic stem cells. The p44 MAPK-/- mice were viable, fertile, and of normal size. Thus, p44 MAPK is apparently dispensable and p42 MAPK (Erk2) may compensate for its loss. However, in p44 MAPK-/- mice, thymocyte maturation beyond the CD4+CD8+ stage was reduced by half, with a similar diminution in the thymocyte subpopulation expressing high levels of T cell receptor (CD3high). In p44 MAPK-/- thymocytes, proliferation in response to activation with a monoclonal antibody to the T cell receptor in the presence of phorbol myristate acetate was severely reduced even though activation of p42 MAPK was more sustained in these cells. The p44 MAPK apparently has a specific role in thymocyte development.

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Cite This Study

Pagès et al. (1999) studied this question.

synapsesocial.com/papers/6a15615637103a43379fa5dahttps://doi.org/10.1126/science.286.5443.1374
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