Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Analysis of C4 and the C4 binding protein in the MRL/lpr mouse

View through CrossRef
AbstractSystemic lupus erythematosus is a complement-mediated autoimmune disease. While genetic deficiencies of classical pathway components lead to an increased risk of developing systemic lupus erythematosus, end organ damage is associated with complement activation and immune complex deposition. The role of classical pathway regulators in systemic lupus erythematosus is unknown. C4 binding protein (C4bp) is a major negative regulator of the classical pathway. In order to study the role of C4bp deficiency in an established murine model of lupus nephritis, mice with a targeted deletion in the gene encoding C4bp were backcrossed into the MRL/lpr genetic background. Compared with control MRL/lpr mice, C4bp knockout MLR/lpr mice had similar mortality and similar degrees of lymphoproliferation. There were no differences in the extent of proteinuria or renal inflammation. Staining for complement proteins and immunoglobulins in the kidneys of diseased mice revealed no significant strain differences. Moreover, there was no difference in autoantibody production or in levels of circulating immune complexes. In comparison with C57BL/6 mice, MRL/lpr mice had depressed C4 levels as early as 3 weeks of age. The absence of C4bp did not impact serum C4 levels or alter classical pathway hemolytic activity. Given that immune complex renal injury in the MRL/lpr mouse is independent of Fc receptors as well as the major negative regulator of the classical pathway, new mechanisms for immune-complex-mediated renal injury need to be considered.
Title: Analysis of C4 and the C4 binding protein in the MRL/lpr mouse
Description:
AbstractSystemic lupus erythematosus is a complement-mediated autoimmune disease.
While genetic deficiencies of classical pathway components lead to an increased risk of developing systemic lupus erythematosus, end organ damage is associated with complement activation and immune complex deposition.
The role of classical pathway regulators in systemic lupus erythematosus is unknown.
C4 binding protein (C4bp) is a major negative regulator of the classical pathway.
In order to study the role of C4bp deficiency in an established murine model of lupus nephritis, mice with a targeted deletion in the gene encoding C4bp were backcrossed into the MRL/lpr genetic background.
Compared with control MRL/lpr mice, C4bp knockout MLR/lpr mice had similar mortality and similar degrees of lymphoproliferation.
There were no differences in the extent of proteinuria or renal inflammation.
Staining for complement proteins and immunoglobulins in the kidneys of diseased mice revealed no significant strain differences.
Moreover, there was no difference in autoantibody production or in levels of circulating immune complexes.
In comparison with C57BL/6 mice, MRL/lpr mice had depressed C4 levels as early as 3 weeks of age.
The absence of C4bp did not impact serum C4 levels or alter classical pathway hemolytic activity.
Given that immune complex renal injury in the MRL/lpr mouse is independent of Fc receptors as well as the major negative regulator of the classical pathway, new mechanisms for immune-complex-mediated renal injury need to be considered.

Related Results

7 th International Symposium on Enabling Technologies for Life Sciences (ETP)
7 th International Symposium on Enabling Technologies for Life Sciences (ETP)
The seventh in the series of ETP Symposia (see Rapid Communications in Mass Spectrometry 2012, 26 , ...
Abnormal IgG galactosylation and arthritis in MRL‐Faslpr or MRL‐FasLgld mice are under the control of the MRL genetic background
Abnormal IgG galactosylation and arthritis in MRL‐Faslpr or MRL‐FasLgld mice are under the control of the MRL genetic background
MRL mice bearing the lpr (Fas) or gld (Fas ligand) mutation, MRL‐Faslpr or MRL‐FasLgld , respectively, develop arthritis similar to rheumatoid arthritis, but C3H and C57BL/6 mice ...
The superior healing capacity of MRL tendons is minimally influenced by the systemic environment of the MRL mouse
The superior healing capacity of MRL tendons is minimally influenced by the systemic environment of the MRL mouse
AbstractMurphy Roths Large mice (MRL) exhibit improved tendon healing and are often described as a “super-healer” strain. The underlying mechanisms that drive the superior healing ...
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...
Renal Mast Cell recruitment in MRL/lpr mice (173.28)
Renal Mast Cell recruitment in MRL/lpr mice (173.28)
Abstract Mast cells (MC) are key effectors cells of the immune system. MC infiltration has been reported in a variety of renal diseases including lupus nephritis. Re...

Back to Top