Skip to main navigation Skip to search Skip to main content

A phospholipase C-γ1-independent, RasGRP1-ERK-dependent pathway drives lymphoproliferative disease in linker for activation of T cells-Y136F mutant mice

  • Robert L. Kortum
  • , Alexandre K. Rouquette-Jazdanian
  • , Michihiko Miyaji
  • , Robert K. Merrill
  • , Evan Markegard
  • , John M. Pinski
  • , Amelia Wesselink
  • , Nandan N. Nath
  • , Clayton P. Alexander
  • , Wenmei Li
  • , Noemi Kedei
  • , Jeroen P. Roose
  • , Peter M. Blumberg
  • , Lawrence E. Samelson
  • , Connie L. Sommers*
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

17 Scopus citations

Abstract

Mice expressing a germline mutation in the phospholipase C-γ1-binding site of linker for activation of T cells (LAT) show progressive lymphoproliferation and ultimately die at 4-6 mo age. The hyperactivated T cells in these mice show defective TCR-induced calcium flux but enhanced Ras/ERK activation, which is critical for disease progression. Despite the loss of LATdependent phospholipase C-γ1 binding and activation, genetic analysis revealed RasGRP1, and not Sos1 or Sos2, to be the major Ras guanine exchange factor responsible for ERK activation and the lymphoproliferative phenotype in these mice. Analysis of isolated CD4+ T cells from LAT-Y136F mice showed altered proximal TCR-dependent kinase signaling, which activated a Zap70- and LAT-independent pathway. Moreover, LAT-Y136F T cells showed ERK activation that was dependent on Lck and/or Fyn, protein kinase C-θ, and RasGRP1. These data demonstrate a novel route to Ras activation in vivo in a pathological setting.

Original languageEnglish
Pages (from-to)147-158
Number of pages12
JournalJournal of Immunology
Volume190
Issue number1
DOIs
StatePublished - 1 Jan 2013

Fingerprint

Dive into the research topics of 'A phospholipase C-γ1-independent, RasGRP1-ERK-dependent pathway drives lymphoproliferative disease in linker for activation of T cells-Y136F mutant mice'. Together they form a unique fingerprint.

Cite this