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白细胞介素-13和白细胞介素-17A通过NF-κB/ Rho激酶/磷脂酰肌醇-4-磷酸-5-激酶1γ途径激活β1整合素,以增强气道平滑肌中的力传递。

IL-13 and IL-17A Activate β1 Integrin through an NF-kB/Rho kinase/PIP5K1γ pathway to Enhance Force Transmission in Airway Smooth Muscle.

作者信息

Ngo Uyen, Shi Ying, Woodruff Prescott, Shokat Kevan, DeGrado William, Jo Hyunil, Sheppard Dean, Sundaram Aparna B

机构信息

Division of Pulmonary, Critical Care, Allergy and Sleep, Department of Medicine, University of California, San Francisco, California, USA.

Sandler Asthma Basic Research Center, University of California, San Francisco, California, USA.

出版信息

bioRxiv. 2024 May 1:2024.05.01.592042. doi: 10.1101/2024.05.01.592042.

Abstract

Integrin activation resulting in enhanced adhesion to the extracellular matrix plays a key role in fundamental cellular processes. Although G-protein coupled receptor-mediated integrin activation has been extensively studied in non-adherent migratory cells such as leukocytes and platelets, much less is known about the regulation and functional impact of integrin activation in adherent stationary cells such as airway smooth muscle. Here we show that two different asthmagenic cytokines, IL-13 and IL-17A, activate type I and IL-17 cytokine receptor families respectively, to enhance adhesion of muscle to the matrix. These cytokines also induce activation of β1 integrins as detected by the conformation-specific antibody HUTS-4. Moreover, HUTS-4 binding is significantly increased in the smooth muscle of patients with asthma compared to healthy controls, suggesting a disease-relevant role for aberrant integrin activation. Indeed, we find integrin activation induced by a β1 activating antibody, the divalent cation manganese, or the synthetic peptide β1-CHAMP, dramatically enhances force transmission in collagen gels, mouse tracheal rings, and human bronchial rings even in the absence of cytokines. We further demonstrate that cytokine-induced activation of β1 integrins is regulated by a common pathway of NF-κB-mediated induction of RhoA and its effector Rho kinase, which in turn stimulates PIP5K1γ-mediated synthesis of PIP resulting in β1 integrin activation. Taken together, these data identify a previously unknown pathway by which type I and IL-17 cytokine receptor family stimulation induces functionally relevant β1 integrin activation in adherent smooth muscle and help explain the exaggerated force transmission that characterizes chronic airways diseases such as asthma.

摘要

整合素激活导致对细胞外基质的粘附增强,这在基本细胞过程中起关键作用。尽管G蛋白偶联受体介导的整合素激活已在白细胞和血小板等非粘附性迁移细胞中得到广泛研究,但对于整合素激活在气道平滑肌等粘附性静止细胞中的调节和功能影响知之甚少。在此,我们表明两种不同的致喘细胞因子,即IL-13和IL-17A,分别激活I型和IL-17细胞因子受体家族,以增强肌肉与基质的粘附。这些细胞因子还诱导了由构象特异性抗体HUTS-4检测到的β1整合素的激活。此外,与健康对照相比,哮喘患者平滑肌中的HUTS-4结合显著增加,表明异常整合素激活与疾病相关。事实上,我们发现由β1激活抗体、二价阳离子锰或合成肽β1-CHAMP诱导的整合素激活,即使在没有细胞因子的情况下,也能显著增强胶原凝胶、小鼠气管环和人支气管环中的力传递。我们进一步证明,细胞因子诱导的β1整合素激活受NF-κB介导的RhoA及其效应物Rho激酶诱导的共同途径调节,这反过来又刺激PIP5K1γ介导的PIP合成,导致β1整合素激活。综上所述,这些数据确定了一条以前未知的途径,通过该途径I型和IL-17细胞因子受体家族刺激在粘附性平滑肌中诱导功能相关的β1整合素激活,并有助于解释诸如哮喘等慢性气道疾病所特有的过度力传递。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f91/11092608/5f8b95f788bd/nihpp-2024.05.01.592042v1-f0001.jpg

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