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Integrin α5β1 regulates PP2A complex assembly through PDE4D in atherosclerosis

机译:整合素α5β1通过PDE4D调节动脉粥样硬化中的PP2A复合物装配

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摘要

Fibronectin in the vascular wall promotes inflammatory activation of the endothelium during vascular remodeling and atherosclerosis. These effects are mediated in part by fibronectin binding to integrin α5, which recruits and activates phosphodiesterase 4D5 (PDE4D5) by inducing its dephosphorylation on an inhibitory site, S651. Active PDE then hydrolyzes antiinflammatory cAMP to facilitate inflammatory signaling. To test this model in vivo, we mutated the integrin binding site of PDE4D5 in mice. This mutation reduced endothelial inflammatory activation in atherosclerosis-prone regions of arteries and, in a hyperlipidemia model, reduced atherosclerotic plaque size while increasing markers of plaque stability. We then investigated the mechanism of PDE4D5 activation. Proteomics identified the PP2A regulatory subunit B55α as the factor recruiting PP2A to PDE4D5. The B55α-PP2A complex localized to adhesions and directly dephosphorylated PDE4D5. This interaction also, unexpectedly, stabilized the PP2A-B55α complex. The integrin-regulated, proatherosclerotic transcription factor Yap was also dephosphorylated and activated through this pathway. PDE4D5 therefore mediated matrix-specific regulation of endothelial cell phenotype via an unconventional adapter role, assembling and anchoring a multifunctional PP2A complex that has other targets. We believe these results may have widespread consequences for the control of cell function by integrins.
机译:血管壁中的纤连蛋白在血管重塑和动脉粥样硬化过程中促进内皮的炎症激活。这些作用部分地由纤连蛋白与整联蛋白α5结合而介导,整联蛋白α5通过在抑制位点S651上诱导其脱磷酸化来募集并激活磷酸二酯酶4D5(PDE4D5)。活性PDE然后水解抗炎cAMP以促进炎性信号传导。为了在体内测试该模型,我们在小鼠中突变了PDE4D5的整联蛋白结合位点。这种突变减少了动脉粥样硬化易发区域的内皮炎性激活,在高脂血症模型中,减少了动脉粥样硬化斑块的大小,同时增加了斑块稳定性的指标。然后,我们研究了PDE4D5激活的机制。蛋白质组学确定PP2A调节亚基B55α是将PP2A募集到PDE4D5的因子。 B55α-PP2A复合物定位于粘连并直接使PDE4D5去磷酸化。这种相互作用也出乎意料地稳定了PP2A-B55α复合物。整联蛋白调节的动脉粥样硬化转录因子Yap也通过该途径去磷酸化和活化。因此,PDE4D5通过非常规的衔接子作用介导了内皮细胞表型的基质特异性调节,从而组装并锚定了具有其他靶标的多功能PP2A复合物。我们相信这些结果可能对整合素控制细胞功能产生广泛的影响。

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