Discovery and engineering of novel IgM proteases for the treatment of autoimmune and inflammatory diseases 2253144
Abstract
Abstract Introduction IgM is a multifunctional immunoglobin that acts as the first line of defense against systemic pathogens. IgM’s multimeric structure, together with its complement binding ability, makes IgM a highly potent inflammation driver. The presence of autoreactive IgM antibodies causing complement dependent damage has been described in inflammatory and autoimmune conditions such as Cold Agglutinin Disease (CAD) and Multifocal Motor Neuropathy (MMN) . For this reason, the development of IgM autoantibodies degrading therapy represents an attractive approach. Methods Employing Seismic’s IMPACT platform and evolutionary screening, we identified several novel and selective IgM proteases. Discovered proteases cleave soluble IgM in plasma and the IgM BCR in B cells from healthy individuals. Results CAD is an autoimmune hemolytic anemia, caused by IgM autoantibodies that bind to red blood cells (RBC), causing agglutination and activate complement cascade resulting in RBC death. Seismic’s IgM protease cleaves RBC bound IgM, preventing agglutination in whole blood from CAD donors, an unmet need not targeted by current approved treatment. In addition, IgM cleavage reduced cold-induced complement deposition on RBC from CAD patients. Conclusion Further engineering and optimization with our IMPACT Platform for the novel proteases is currently under way. Funding Source n/a Topic Categories Therapeutic Approaches to Autoimmunity (THER)
Article Details
Journal Info
The Journal of Immunology
American Association of Immunologists
Authors (9)
Liliana Sanmarco
Brigham and women’s hospital
Jordan Anderson
Seismic Therapeutic
Agustin Plasencia
Nathan Higginson-Scott
Seismic Therapeutic
Kevin Otipoby
Seismic Therapeutic
Jyothsna Visweswaraiah
Seismic Therapeutic
Alex Pellerin
Seismic Therapeutic
Yi Xing
School of Energy and Environmental Engineering
Ivan Mascanfroni
NA