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Malignant JAK-signaling: at the interface of inflammation and malignant transformation
Florian Perner1, Heike L Pahl2, Robert Zeiser2
1Department of Hematology, Hemostasis, Oncology and Stem Cell Transplantation, Hannover Medical School (MHH), Hannover, Germany.
Abstract:
The JAK pathway is central to mammalian cell communication, characterized by rapid responses, receptor versatility, and fine-tuned regulation. It involves Janus kinases (JAK1, JAK2, JAK3, TYK2), which are activated when natural ligands bind to receptors, leading to autophosphorylation and activation of STAT transcription factors [1, 2]. JAK-dependent signaling plays a pivotal role in coordinating cell communication networks across a broad spectrum of biological systems including development, immune responses, cell growth, and differentiation. JAKs are frequently mutated in the aging hematopoietic system [3, 4] and in hematopoietic cancers [5]. Thus, dysregulation of the pathway results in various diseases, including cancers and immune disorders. The binding of extracellular ligands to class I and II cytokine receptors initiates a critical signaling cascade through the activation of Janus kinases (JAKs). Upon ligand engagement, JAKs become activated and phosphorylate specific tyrosine residues on the receptor, creating docking sites for signal transducer and activator of transcription (STAT) proteins. Subsequent JAK-mediated phosphorylation of STATs enables their dimerization and nuclear translocation, where they function as transcription factors to modulate gene expression. Under physiological conditions, JAK-signaling is a tightly regulated mechanism that governs cellular responses to external cues, such as cytokines and growth factors, ensuring homeostasis and maintaining the functional integrity of tissues and organs. Highly defined regulation of JAK-signaling is essential for balancing cellular responses to inflammatory stimuli and growth signals, thus safeguarding tissue health. In contrast, dysregulated JAK-signaling results in chronic inflammation and unrestrained cellular proliferation associated with various diseases. Understanding the qualitative and quantitative differences at the interface of physiologic JAK-signaling and its aberrant activation in disease is crucial for the development of targeted therapies that precisely tune this pathway to target pathologic activation patterns while leaving homeostatic processes largely unaffected. Consequently, pharmaceutical research has targeted this pathway for drug development leading to the approval of several substances with different selectivity profiles towards individual JAKs. Yet, the precise impact of inhibitor selectivity and the complex interplay of different functional modules within normal and malignant cells remains incompletely understood. In this review, we summarize the current knowledge on JAK-signaling in health and disease and highlight recent advances and future directions in the field.
Insights
The Janus kinase (JAK) pathway is crucial for cell communication and is implicated in diseases like cancer. Understanding JAK signaling in health and disease is key for developing targeted therapies.
Area of Science:
- Cellular signaling and molecular biology.
- Mammalian cell communication and immune responses.
Background:
- The Janus kinase (JAK) pathway, involving JAKs (JAK1, JAK2, JAK3, TYK2) and STAT transcription factors, is central to mammalian cell communication.
- JAK signaling regulates development, immune responses, cell growth, and differentiation, but its dysregulation is linked to cancers and immune disorders.
Purpose of the Study:
- To review current knowledge on JAK-signaling in health and disease.
- To highlight recent advances and future directions in JAK pathway research for therapeutic development.
Main Methods:
- Literature review of JAK pathway mechanisms, regulation, and dysregulation.
- Analysis of JAK pathway's role in physiological processes and pathological conditions.
Main Results:
- JAKs are activated by ligand-bound receptors, leading to STAT phosphorylation, dimerization, and nuclear translocation to modulate gene expression.
- Dysregulated JAK signaling contributes to chronic inflammation and uncontrolled cell proliferation, driving diseases like cancer.
Conclusions:
- Targeted therapies for JAK-mediated diseases require a deep understanding of signaling differences between physiological and pathological states.
- Further research is needed to clarify the impact of JAK inhibitor selectivity and pathway interactions in normal and malignant cells.
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