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TNK1 is a targetable JAK-independent driver of STAT signaling and inflammation

STAT1 磷酸化 生物 斯达 促炎细胞因子 贾纳斯激酶 癌症研究 细胞生物学 信号转导 炎症 JAK-STAT信号通路 结肠炎 车站3 激酶 激活剂(遗传学) 酪氨酸磷酸化 STAT蛋白 酪氨酸激酶 酪氨酸 状态4 转录因子 酪氨酸激酶2 胞浆 NF-κB 受体酪氨酸激酶 Janus激酶2 细胞信号 免疫学 抄写(语言学) STAT6
作者
Tania P. López-Palacios,Deshan Madhusanka,Samuel Scott,Alec Vaughan,Christina M. Egbert,Tsz‐Yin Chan,Yaphet Bustos,Spencer Ashworth,Jacob M. Truman,Angela Per Moreno,Tsz‐Ming Tsang,Dasun N. Jayatunge,Jingshu Yang,Paige Nelson,Fatima Al-Sudani,Madelyn Tarara,Emmalee Kohler,Nelson E. Pereira Mendiola,Erik J. Soderblom,Chris Stubben
出处
期刊:Genes & Development [Cold Spring Harbor Laboratory Press]
标识
DOI:10.1101/gad.353368.125
摘要

Deregulated inflammatory signaling via STAT family transcription factors, particularly STAT1, underlies a variety of immune-related diseases, including inflammatory bowel disease. Whereas activation of STATs by JAKs via canonical receptor-driven JAK-STAT signaling is well understood, little is known about JAK-independent mechanisms of STAT activation. Here, we identify the understudied nonreceptor tyrosine kinase TNK1 as a therapeutically targetable, JAK-independent activator of STAT signaling. Using a multiomics approach, we mapped a network of TNK1 substrates associated with protein condensates and proinflammatory signaling, including STAT1. We found that TNK1, but not its sister kinase ACK1, directly phosphorylates STATs at well described STAT-activating JAK sites. In cells, TNK1-mediated STAT1 phosphorylation and activation occurs independently of JAKs. Imaging and interactomics data suggest that TNK1 interacts with STAT1 in cytosolic condensates, which likely compartmentalize TNK1-substrate interactions. We show that an intrinsically disordered proline-rich region in TNK1, which includes a 14-3-3 docking phosphorylation site, is required for the formation of kinase-active TNK1 condensates and STAT1 phosphorylation. Mutations within the proline-rich region that eliminate 14-3-3 binding increase formation of TNK1 condensates, suggesting a model in which 14-3-3 acts as a clamp that constrains the flexible PRR to inhibit condensate formation and STAT1 activation. Finally, we show that TNK1 is a targetable driver of STAT1-mediated inflammation in the gut as inhibition of TNK1 reduces active STAT1 in the colon and ameliorates colitis symptoms in mice.
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