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Co-immunoprecipitation Assay for Studying Functional Interactions Between Receptors and Enzymes
Published on: September 28, 2018
Receptor Interacting Protein Kinase Pathways Regulate Innate B Cell Developmental Checkpoints But Not Effector
Raksha Parthasarathy1, Thomas Hägglöf1, Jason T Hadley2
1Department of Microbiology, Immunology & Molecular Genetics, University of Texas Health at San Antonio, San Antonio, TX, United States.
Abstract:
Mutations in the scaffolding domain of Receptor Interacting Protein kinases (RIP) underlie the recently described human autoimmune syndrome, CRIA, characterized by lymphadenopathy, splenomegaly, and autoantibody production. While disease mechanisms for CRIA remain undescribed, RIP kinases work together with caspase-8 to regulate cell death, which is critical for normal differentiation of many cell types. Here, we describe a key role for RIP1 in facilitating innate B cell differentiation and subsequent activation. By comparing RIP1, RIP3, and caspase-8 triple deficient and RIP3, caspase-8 double deficient mice, we identified selective contributions of RIP1 to an accumulation of murine splenic Marginal Zone (MZ) B cells and B1-b cells. We used mixed bone-marrow chimeras to determine that innate B cell commitment required B cell-intrinsic RIP1, RIP3, and caspase-8 sufficiency. RIP1 regulated MZ B cell development rather than differentiation and RIP1 mediates its innate immune effects independent of the RIP1 kinase domain. NP-KLH/alum and NP-Ficoll vaccination of mice doubly deficient in both caspase-8 and RIP3 or deficient in all three proteins (RIP3, caspase-8, and RIP1) revealed uniquely delayed T-dependent and T-independent IgG responses, abnormal splenic germinal center architecture, and reduced extrafollicular plasmablast formation compared to WT mice. Thus, RIP kinases and caspase-8 jointly orchestrate B cell fate and delayed effector function through a B cell-intrinsic mechanism.
Insights
Receptor Interacting Protein (RIP) kinases and caspase-8 are crucial for innate B cell development and immune responses. This study reveals their role in B cell differentiation and activation, impacting autoimmune disease mechanisms.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- Mutations in Receptor Interacting Protein (RIP) kinases cause the autoimmune syndrome CRIA.
- RIP kinases and caspase-8 regulate cell death, vital for cell differentiation.
- The precise role of RIP kinases in B cell immunity is not fully understood.
Purpose of the Study:
- To investigate the role of RIP1 in innate B cell differentiation and activation.
- To elucidate the specific contributions of RIP1, RIP3, and caspase-8 to B cell development.
- To understand the impact of these proteins on immune responses and autoimmune disease.
Main Methods:
- Comparative analysis of RIP1, RIP3, and caspase-8 deficient mice.
- Use of mixed bone-marrow chimeras to assess B cell commitment.
- Vaccination studies (NP-KLH/alum and NP-Ficoll) to evaluate immune responses.
Main Results:
- RIP1 deficiency selectively affects murine splenic Marginal Zone (MZ) B cells and B1-b cells.
- B cell-intrinsic RIP1, RIP3, and caspase-8 are required for innate B cell commitment.
- RIP1 regulates MZ B cell development independently of its kinase domain.
- RIP kinase and caspase-8 deficiency leads to delayed IgG responses and altered splenic architecture.
Conclusions:
- RIP kinases and caspase-8 orchestrate B cell fate and effector function through a B cell-intrinsic mechanism.
- These findings provide insights into the pathogenesis of CRIA and B cell-mediated immunity.
- Targeting RIP kinases and caspase-8 may offer therapeutic strategies for autoimmune diseases.
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