AI Article Synopsis

  • FcγRs (receptors for the Fc fragment of IgG) are crucial for mediating the functions of IgG antibodies and maintaining a balance between autoimmunity and tolerance.
  • There are three types of FcγRs in humans (FcγRI, FcγRII, and FcγRIII) that are linked to various inflammatory and autoimmune diseases, like vasculitis and autoimmune hemolytic anemia.
  • Recent research indicates that FcγRs may facilitate the entry of antibodies into cells and play a significant role in how autoantibodies impact autoimmune conditions.

Article Abstract

Receptors for the Fc fragment of immunoglobulin G (FcγRs) are important molecules not only to mediate and control the effectors' functions of IgG antibodies, but they also control the autoimmunity-tolerance balance in the periphery. In humans, three different types of FcγRs, belonging to the Ig gene superfamily, have been identified; FcγRI (cluster of differentiation (CD64), FcγRII (CD32) and FcγRIII (CD16). A wide range of inflammatory and autoimmune diseases, such as vasculitis, glomerulonephritis, and autoimmune hemolytic anemia, seems to be mediated, in part, by FcγRs. Recent findings supposed that, under certain conditions, FcγRs are involved in the penetration of antibodies into cells and FcγRs constitute one of the main effector mechanisms through which autoantibodies exert their action. In this review, we concentrate on the role of human FcγRs in autoantibodies penetration and summarize the current knowledge on the structure, ligand binding capacity and their role in autoimmunity and pathogenic effect of autoantibodies.

Download full-text PDF

Source
http://dx.doi.org/10.1007/s10238-010-0098-1DOI Listing

Publication Analysis

Top Keywords

fcγrs
6
advances understanding
4
understanding gamma
4
gamma receptors-mediated
4
autoantibodies
4
receptors-mediated autoantibodies
4
autoantibodies uptake
4
uptake receptors
4
receptors fragment
4
fragment immunoglobulin
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!