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JAK1: Number one in the family; number one in inflammation?
Francesca Romana Spinelli1, Robert A Colbert2, Massimo Gadina3
1Dipartimento di Scienze Cliniche Internistiche, Anestesiologiche e Cardiovascolari-Reumatologia, Sapienza Università di Roma, Rome, Italy.
Abstract:
Several cytokines involved in inflammatory pathologies signal via the Janus kinase-signal transducer and activator of transcription pathway. Four JAKs are known: JAK1, JAK2, JAK3 and TYK2. The specific activation of JAKs and STATs determines the biological effects of each cytokine. JAK1 is involved in the signalling of 'γc' receptor cytokines (IL-2, IL-4, IL-7, IL-9, IL-15 and IL-21), pro-inflammatory cytokines including IL-6, as well as IFN. The critical position of JAK1 downstream of these cytokines suggests that JAK1-selective inhibitors are comparable to non-selective ones, without the unwanted consequences of JAK2- or JAK3-blockade. JAK inhibition has led to a better understanding of the biology of synovial inflammation and bone homeostasis. Moreover, the efficacy of non-selective JAK inhibitors and novel JAK1-selective drugs in RA supports a role for JAK1 in its pathogenesis. JAK1-selective drugs are also showing promise in axial spondyloarthritis, suggesting that they may target additional regulatory pathways that impact cytokines such as TNF and IL-17A, which do not use JAKs. Additionally, evidence now supports a JAK1 predominance in the signalling of IL-6 and oncostatin M, and indirectly, of TNF in synovial fibroblasts, macrophages and endothelial cells. Notably, bone homeostasis is also dependent on cytokines relying on JAK1 signalling to promote receptor activator of NF-κB ligand expression in osteoblasts and T cells, contributing to osteoclastogenesis. Here, the contribution of JAK1 over other kinases is unclear. While beneficial effects of JAK inhibitors on bone erosion are supported by preclinical and clinical data, effects on new bone formation in axial spondyloarthritis requires additional study.
Insights
Selective Janus kinase 1 (JAK1) inhibitors offer therapeutic potential for inflammatory diseases like rheumatoid arthritis and axial spondyloarthritis. These JAK1-selective drugs provide benefits without the side effects of broader JAK inhibition.
Area of Science:
- Immunology
- Molecular Biology
- Pharmacology
Background:
- Cytokines mediate inflammatory pathologies through the Janus kinase-signal transducer and activator of transcription (JAK-STAT) pathway.
- Four Janus kinases (JAKs) exist: JAK1, JAK2, JAK3, and TYK2, with specific activation dictating cytokine effects.
- JAK1 plays a critical role in signaling pathways for numerous cytokines, including those involved in inflammation and immune responses.
Purpose of the Study:
- To investigate the role of JAK1 in inflammatory conditions and bone homeostasis.
- To evaluate the therapeutic potential of JAK1-selective inhibitors compared to non-selective JAK inhibitors.
- To explore the involvement of JAK1 in the pathogenesis of rheumatoid arthritis and axial spondyloarthritis.
Main Methods:
- Review of existing preclinical and clinical data on JAK inhibitors.
- Analysis of cytokine signaling pathways involving JAK1.
- Evaluation of the efficacy of JAK1-selective drugs in animal models and human studies.
Main Results:
- JAK1 is central to the signaling of 'γc' receptor cytokines, IL-6, and interferons.
- JAK1-selective inhibitors show comparable efficacy to non-selective inhibitors for rheumatoid arthritis, potentially avoiding JAK2/JAK3-related side effects.
- Evidence suggests JAK1's role in synovial inflammation, bone homeostasis, and osteoclastogenesis, with emerging promise in axial spondyloarthritis.
Conclusions:
- JAK1-selective inhibition represents a promising therapeutic strategy for inflammatory diseases.
- Targeting JAK1 may offer a more precise approach to managing conditions like rheumatoid arthritis and axial spondyloarthritis.
- Further research is needed to fully elucidate JAK1's role in bone formation and its therapeutic implications.
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