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ALPK1与STING之间的串扰:先天免疫激活和人类炎症性疾病中的协同轴

Crosstalk Between ALPK1 and STING: A Synergistic Axis in Innate Immune Activation and Human Inflammatory Disease.

作者信息

Shi Chong-Shan, Kozycki Christina, Huang Ning-Na, Hwang Il-Young, Hammoud Dima A, Kastner Daniel L, Kehrl John H

出版信息

bioRxiv. 2025 Jul 4:2025.06.30.662363. doi: 10.1101/2025.06.30.662363.

Abstract

Alpha kinase 1 (ALPK1) is a cytosolic sensor of microbial sugar metabolites that activates NF-κB signaling through phosphorylation of the adaptor protein TIFA. Although canonically linked to NF-κB, individuals with gain-of-function ALPK1 mutations also show features of interferon-driven inflammation. Here, we show that ALPK1 activation enhances multiple outputs of the stimulator of interferon genes (STING) pathway, including both canonical and noncanonical responses such as STING proton channel-dependent LC3B lipidation and NLRP3 inflammasome activation. Furthermore, ALPK1 signaling activates eIF2α, an effector of the integrated stress response. Conversely, STING activation increases ALPK1 protein expression and triggers TIFA-Threonine 9 phosphorylation. Clinically, individuals with ALPK1-mediated disease exhibit premature intracranial mineralization and elevated cerebrospinal fluid neopterin, both associated with dysregulated interferon signaling. These findings support a model of bidirectional signaling between ALPK1 and STING, in which microbial and nucleic acid sensing pathways can amplify one another. This crosstalk provides a mechanistic framework for understanding innate immune signaling relevant to both homeostasis and disease.

摘要

α激酶1(ALPK1)是一种微生物糖代谢产物的胞质传感器,它通过衔接蛋白TIFA的磷酸化激活核因子κB(NF-κB)信号通路。虽然通常与NF-κB相关联,但具有功能获得性ALPK1突变的个体也表现出干扰素驱动的炎症特征。在此,我们表明,ALPK1激活增强了干扰素基因刺激物(STING)通路的多个输出,包括经典和非经典反应,如STING质子通道依赖性LC3B脂化和NLRP3炎性小体激活。此外,ALPK1信号激活真核生物翻译起始因子2α(eIF2α),这是综合应激反应的一个效应因子。相反,STING激活增加ALPK1蛋白表达并触发TIFA苏氨酸9磷酸化。临床上,患有ALPK1介导疾病的个体表现出颅内过早矿化和脑脊液新蝶呤升高,两者均与干扰素信号失调有关。这些发现支持了ALPK1和STING之间双向信号传导的模型,其中微生物和核酸传感通路可以相互放大。这种串扰为理解与稳态和疾病相关的固有免疫信号提供了一个机制框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee34/12236711/f60723b5cf1d/nihpp-2025.06.30.662363v1-f0001.jpg

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