IL-15 links TLR2/1-induced macrophage differentiation to the vitamin D-dependent antimicrobial pathway |
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Authors: | Krutzik Stephan R Hewison Martin Liu Philip T Robles Juan Antonio Stenger Steffen Adams John S Modlin Robert L |
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Affiliation: | Division of Dermatology, David Geffen School of Medicine at University of California Los Angeles, CA 90095, USA. |
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Abstract: | An essential function of the innate immune system is to directly trigger antimicrobial mechanisms to defend against invading pathogens. In humans, one such pathway involves activation by TLR2/1L leading to the vitamin D-dependent induction of antimicrobial peptides. In this study, we found that TLR2/1-induced IL-15 was required for induction of CYP27b1, the VDR and the downstream antimicrobial peptide cathelicidin. Although both IL-15 and IL-4 triggered macrophage differentiation, only IL-15 was sufficient by itself to induce CYP27b1 and subsequent bioconversion of 25-hydroxyvitamin D3 (25D3) into bioactive 1,25D3, leading to VDR activation and induction of cathelicidin. Finally, IL-15-differentiated macrophages could be triggered by 25D3 to induce an antimicrobial activity against intracellular Mycobacterium tuberculosis. Therefore, IL-15 links TLR2/1-induced macrophage differentiation to the vitamin D-dependent antimicrobial pathway. |
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