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SOCS modulates JAK-STAT pathway as a novel target to mediate the occurrence of neuroinflammation: Molecular details and treatment options

Min Yan, Zhiyuan Sun, Sen Zhang, Guangxin Yang, Xing Jiang, Guilong Wang, Ran Li, Qinglu Wang, Xuewen Tian

2024Brain Research Bulletin32 citationsDOIOpen Access PDF

Abstract

SOCS (Suppressor of Cytokine Signalling) proteins are intracellular negative regulators that primarily modulate and inhibit cytokine-mediated signal transduction, playing a crucial role in immune homeostasis and related inflammatory diseases. SOCS act as inhibitors by regulating the Janus kinase-signal transducer and activator of transcription (JAK-STAT) signaling pathway, thereby intervening in the pathogenesis of inflammation and autoimmune diseases. Recent studies have also demonstrated their involvement in central immunity and neuroinflammation, showing a dual functionality. However, the specific mechanisms of SOCS in the central nervous system remain unclear. This review thoroughly elucidates the specific mechanisms linking the SOCS-JAK-STAT pathway with the inflammatory manifestations of neurodegenerative diseases. Based on this, it proposes the theory that SOCS proteins can regulate the JAK-STAT pathway and inhibit the occurrence of neuroinflammation. Additionally, this review explores in detail the current therapeutic landscape and potential of targeting SOCS in the brain via the JAK-STAT pathway for neuroinflammation, offering insights into potential targets for the treatment of neurodegenerative diseases.

Topics & Concepts

NeuroinflammationJanus kinasestatJAK-STAT signaling pathwaySTAT proteinSignal transductionSuppressor of cytokine signallingNeuroscienceBiologySOCS3CytokineSuppressor of cytokine signaling 1InflammationImmunologySTAT3Cell biologySuppressorTyrosine kinaseGeneGeneticsCytokine Signaling Pathways and InteractionsNeuroinflammation and Neurodegeneration Mechanismsinterferon and immune responses
SOCS modulates JAK-STAT pathway as a novel target to mediate the occurrence of neuroinflammation: Molecular details and treatment options | Litcius