Javascript must be enabled to continue!
gld/gld mice are unable to express a functional ligand for Fas
View through CrossRef
AbstractMice homozygous for either the lpr or gld genes develop phenotypically identical autoimmune disorders. The gene responsible for the pathology in lpr/lpr mice encodes the Fas antigen, a protein associated with the induction of programmed cell death. To determine if the defect associated with gld represents a mutation in the ligand for Fas, we have assessed the ability of lymphoid cells from homozygous gld/gld mice to lyse target cells in a Fas‐dependent manner. Using an antagonistic antibody to Fas, we demonstrate that activated T cells from normal and lpr mice are capable of inducing Fas‐mediated lysis of tumor target cells. In contrast, activated T cells from gld/gld mice fail to induce lysis of tumor targets, although cells from gld mice are able to lyse specific allogeneic targets following mixed lymphocyte culture. In addition, activated T cells from gld/gld homozygous animals are not capable of binding to a Fas.Fc fusion protein at high levels, whereas activated T cells from normal and lpr/lpr animals bind Fas.Fc efficiently. These data indicate that mice homozygous for gld are unable to express a functional ligand for Fas.
Title: gld/gld mice are unable to express a functional ligand for Fas
Description:
AbstractMice homozygous for either the lpr or gld genes develop phenotypically identical autoimmune disorders.
The gene responsible for the pathology in lpr/lpr mice encodes the Fas antigen, a protein associated with the induction of programmed cell death.
To determine if the defect associated with gld represents a mutation in the ligand for Fas, we have assessed the ability of lymphoid cells from homozygous gld/gld mice to lyse target cells in a Fas‐dependent manner.
Using an antagonistic antibody to Fas, we demonstrate that activated T cells from normal and lpr mice are capable of inducing Fas‐mediated lysis of tumor target cells.
In contrast, activated T cells from gld/gld mice fail to induce lysis of tumor targets, although cells from gld mice are able to lyse specific allogeneic targets following mixed lymphocyte culture.
In addition, activated T cells from gld/gld homozygous animals are not capable of binding to a Fas.
Fc fusion protein at high levels, whereas activated T cells from normal and lpr/lpr animals bind Fas.
Fc efficiently.
These data indicate that mice homozygous for gld are unable to express a functional ligand for Fas.
Related Results
Age-dependent, polyclonal hyperactivation of T cells is reduced in TNF-negativegld/gldmice
Age-dependent, polyclonal hyperactivation of T cells is reduced in TNF-negativegld/gldmice
AbstractThe generalized lymphoproliferative disorder (gld) mouse strain is characterized by severe splenomegaly/lymphadenopathy, the production of autoimmune antibodies, and the ap...
Structural basis for the antagonistic roles of RNP-8 and GLD-3 in GLD-2 poly(A)-polymerase activity
Structural basis for the antagonistic roles of RNP-8 and GLD-3 in GLD-2 poly(A)-polymerase activity
Cytoplasmic polyadenylation drives the translational activation of specific mRNAs in early metazoan development and is performed by distinct complexes that share the same catalytic...
Lymphadenopathy induced by the cooperation between lprcg and gld genes is of lpr but not of gld phenotype
Lymphadenopathy induced by the cooperation between lprcg and gld genes is of lpr but not of gld phenotype
AbstractMice homozygous for the lpr (lymphoproliferation), lprcg or gld (generalized lymphoproliferative disease) mutation develop strikingly similar lymphadenopathy with expansion...
FAS Gene Expression Is Epigenetically Regulated and Predicts the Responsiveness to Azacitidine In High-Risk Myelodysplastic Syndromes
FAS Gene Expression Is Epigenetically Regulated and Predicts the Responsiveness to Azacitidine In High-Risk Myelodysplastic Syndromes
Abstract
Abstract 232
Background:
Low risk myelodysplastic syndromes (MDS) CD34-positive cells exhibit high level...
Genetic regulation of entry into meiosis in Caenorhabditis elegans
Genetic regulation of entry into meiosis in Caenorhabditis elegans
ABSTRACT
The Caenorhabditis elegans germline is composed of mitotically dividing cells at the distal end that give rise to meiotic cells more proximally. Specificati...
Thymic Expression of the Transcription Factor Nur77 Rescues the T Cell But Not the B Cell Abnormality of gld/gld Mice
Thymic Expression of the Transcription Factor Nur77 Rescues the T Cell But Not the B Cell Abnormality of gld/gld Mice
Abstract
Fas and Fas ligand are critical regulators of lymphocyte homeostasis. Disruption of this pathway in the spontaneous mouse mutant gld leads to autoimmunity c...
Functional distinctions between MRL-lpr and MRL-gld lymphocytes. Normal cells reverse the gld but not lpr immunoregulatory defect.
Functional distinctions between MRL-lpr and MRL-gld lymphocytes. Normal cells reverse the gld but not lpr immunoregulatory defect.
Abstract
Homozygosity for either of the autosomal recessive mutations, lpr or gld, confers an autoimmune syndrome characterized by massive lymphoid hyperplasia and e...
Mutation of CD95 (Fas/Apo-1) Gene in Adult T-Cell Leukemia Cells
Mutation of CD95 (Fas/Apo-1) Gene in Adult T-Cell Leukemia Cells
AbstractCD95 antigen (also known as Fas or Apo-1) and Fas ligand play key roles in apoptosis of cells of the immune system, function as effector molecules of cytotoxic T lymphocyte...

