凝血酶受体 PAR4 交叉激活心房心肌细胞中的酪氨酸激酶 c-met

Claudia Mittendorff, Issam Abu-Taha, Lena Kassler, Tobias Hustedt, Stephanie Wolf, Johannes G. Bode, Markus Kamler, Dobromir Dobrev, Anke C. Fender
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摘要

凝血酶通过蛋白酶活化受体(PAR)支持凝血无关性炎症。肥胖者心房中的 PAR4 特异性增加,与 NLRP3 炎症小体激活相关。心房心肌细胞中 PAR4 介导的 NLRP3 炎症小体活化尚不清楚,信号传导伙伴也未确定。在一些癌细胞中,凝血酶可反式激活肝细胞生长因子受体,因此我们研究了心房心肌细胞中的 PAR4/c-met 交叉对话及其在肥胖症中的可能意义。与非肥胖者相比,肥胖患者右心房附属器(RAA)的心肌细胞表达了更多的 PAR1 和 PAR4。在HL-1心房心肌细胞中,凝血酶诱导caspase-1自激活和IL-1β成熟;PAR4-活化肽(AP)诱导IL-1β分泌,而PAR1-AP不诱导IL-1β分泌。PAR4-AP 还增加了磷酸化的 CaMKII-Thr287、mTOR-Ser2481 和 Akt-Ser473,同时抑制了 AMPK-Thr172 磷酸化。激酶的总水平基本没有变化。PAR4AP 能迅速增加 HL-1 细胞中磷酸化的 c-met,并随着时间的推移转录上调 c-met。c-met 抑制剂 SGX-523 可减弱 PAR4-AP 对 CaMKII/AKT/mTOR 磷酸化的影响,但不影响 PAR4 刺激的 IL-1β 的产生。与非肥胖 RAA 相比,肥胖人类 RAA 含有更多的 IL-1β、磷酸化-c-met 和磷酸化-mTOR;CamKII 磷酸化没有改变。高脂饮食(HFD)小鼠与饲料喂养小鼠的心房也含有更多的IL-1β,以及更高的髓过氧化物酶活性、Acta2 mRNA总量和磷酸化c-met;这些增加在PAR4-/-HFD喂养小鼠中被减弱。凝血酶通过 PAR4 在心房心肌细胞中交叉激活 c-met。反式激活的c-met对PAR4介导的信号传导有部分作用,但NLRP3炎性体的激活似乎在很大程度上与c-met无关。PAR4和活化的c-met的丰度随着肥胖的增加而增加,这为控制脂肪驱动的房颤提供了治疗目标。
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Thrombin receptor PAR4 cross-activates the tyrosine kinase c-met in atrial cardiomyocytes

Thrombin supports coagulation-independent inflammation via protease-activated receptors (PAR). PAR4 is specifically increased in obese human atria, correlating with NLRP3 inflammasome activation. PAR4-mediated NLRP3 inflammasome activation in atrial cardiomyocytes is not known, nor have signaling partners been identified. Thrombin transactivates the hepatocyte growth factor receptor in some cancer cells, so we examined PAR4/c-met cross-talk in atrial cardiomyocytes and its possible significance in obesity. Cardiomyocytes from right atrial appendages (RAA) of obese patients expressed more PAR1 and PAR4 compared to non-obese. In HL-1 atrial cardiomyocytes, thrombin induced caspase-1 auto-activation and IL-1β maturation; IL-1β secretion was evoked by PAR4-activating peptide (AP), but not PAR1-AP. PAR4-AP additionally increased phosphorylated CaMKII-Thr287, mTOR-Ser2481, and Akt-Ser473 while suppressing AMPK-Thr172 phosphorylation. Total kinase levels were largely unaltered. PAR4AP rapidly increased phosphorylated c-met in HL-1 cells and over time also transcriptionally upregulated c-met. The c-met inhibitor SGX-523 abrogated the effects of PAR4-AP on CaMKII/AKT/mTOR phosphorylation but did not affect PAR4-stimulated IL-1β production. Obese human RAA contained more IL-1β, phospho-c-met, and phospho-mTOR than non-obese RAA; CamKII phosphorylation was not modified. Atria from high-fat diet (HFD) versus chow-fed mice also contained more IL-1β, together with higher myeloperoxidase activity, Acta2 mRNA total and phosphorylated c-met; these increases were blunted in PAR4-/- HFD-fed mice. Thrombin cross-activates c-met via PAR4 in atrial cardiomyocytes. Transactivated c-met contributes partially to PAR4-mediated signaling, but NLRP3 inflammasome activation appears to be largely independent of c-met. Abundance of PAR4 and activated c-met increases with obesity, providing therapeutic targets for management of adiposity-driven AF.

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