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Generation and Characterization of Mice Expressing a Conditional Allele of the Interleukin-1 Receptor Type 1
Authors:Matthew J. Robson  Chong-Bin Zhu  Meagan A. Quinlan  David A. Botschner  Nicole L. Baganz  Kathryn M. Lindler  Jason G. Thome  William A. Hewlett  Randy D. Blakely
Affiliation:1. Department of Pharmacology, Vanderbilt University School of Medicine, Nashville, Tennessee, United States of America;2. Osher Center for Integrative Medicine, Vanderbilt University School of Medicine, Nashville, Tennessee, United States of America;3. Department of Psychiatry, Vanderbilt University School of Medicine, Nashville, Tennessee, United States of America;4. Institute for Psychiatric Neuroscience, Nashville, Tennessee, United States of America;University of Lisbon, PORTUGAL
Abstract:The cytokines IL-1α and IL-1β exert powerful pro-inflammatory actions throughout the body, mediated primarily by the intracellular signaling capacity of the interleukin-1 receptor (IL-1R1). Although Il1r1 knockout mice have been informative with respect to a requirement for IL-1R1 signaling in inflammatory events, the constitutive nature of gene elimination has limited their utility in the assessment of temporal and spatial patterns of cytokine action. To pursue such questions, we have generated C57Bl/6J mice containing a floxed Il1r1 gene (Il1r1loxP/loxP), with loxP sites positioned to flank exons 3 and 4 and thereby the ability to spatially and temporally eliminate Il1r1 expression and signaling. We found that Il1r1loxP/loxP mice breed normally and exhibit no gross physical or behavioral phenotypes. Moreover, Il1r1loxP/loxP mice exhibit normal IL-1R1 receptor expression in brain and spleen, as well as normal IL-1R1-dependent increases in serum IL-6 following IL-1α injections. Breeding of Il1r1loxP/loxP mice to animals expressing a cytomegalovirus (CMV)-driven Cre recombinase afforded efficient excision at the Il1r1 locus. The Il1r1loxP/loxP line should be a valuable tool for the assessment of contributions made by IL-1R1 signaling in diverse cell types across development.
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