[HTML][HTML] ROCK1 via LIM kinase regulates growth, maturation and actin based functions in mast cells

R Kapur, J Shi, J Ghosh, V Munugalavadla, E Sims… - Oncotarget, 2016 - ncbi.nlm.nih.gov
R Kapur, J Shi, J Ghosh, V Munugalavadla, E Sims, H Martin, L Wei, RS Mali
Oncotarget, 2016ncbi.nlm.nih.gov
Understanding mast cell development is essential due to their critical role in regulating
immunity and autoimmune diseases. Here, we show how Rho kinases (ROCK) regulate
mast cell development and can function as therapeutic targets for treating allergic diseases.
Rock1 deficiency results in delayed maturation of bone marrow derived mast cells (BMMCs)
in response to IL-3 stimulation and reduced growth in response to stem cell factor (SCF)
stimulation. Further, integrin-mediated adhesion and migration, and IgE-mediated …
Abstract
Understanding mast cell development is essential due to their critical role in regulating immunity and autoimmune diseases. Here, we show how Rho kinases (ROCK) regulate mast cell development and can function as therapeutic targets for treating allergic diseases. Rock1 deficiency results in delayed maturation of bone marrow derived mast cells (BMMCs) in response to IL-3 stimulation and reduced growth in response to stem cell factor (SCF) stimulation. Further, integrin-mediated adhesion and migration, and IgE-mediated degranulation are all impaired in Rock1-deficient BMMCs. To understand the mechanism behind altered mast cell development in Rock1−/− BMMCs, we analyzed the activation of ROCK and its downstream targets including LIM kinase (LIMK). We observed reduced activation of ROCK, LIMK, AKT and ERK1/2 in Rock1-deficient BMMCs in response to SCF stimulation. Further, loss of either Limk1 or Limk2 also demonstrated altered BMMC maturation and growth; combined deletion of both Limk1 and Limk2 resulted in further reduction in BMMC maturation and growth. In passive cutaneous anaphylaxis model, deficiency of Rock1 or treatment with ROCK inhibitor Fasudil protected mice against IgE-mediated challenge. Our results identify ROCK/LIMK pathway as a novel therapeutic target for treating allergic diseases involving mast cells.
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