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首页> 外文期刊>Cardiovascular Research >FAK mediates the activation of cardiac fibroblasts induced by mechanical stress through regulation of the mTOR complex.
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FAK mediates the activation of cardiac fibroblasts induced by mechanical stress through regulation of the mTOR complex.

机译:FAK通过调节mTOR复合物介导由机械应力诱导的心脏成纤维细胞的活化。

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AIMS: Cardiac fibroblasts are activated by mechanical stress, but the underlying mechanisms involved remain poorly understood. In this study, we investigated whether focal adhesion kinase (FAK) plays a role in the activation of cardiac fibroblasts in response to cyclic stretch. METHODS AND RESULTS: Neonatal (NF-P3/80--third passage, 80% confluence) and adult (AF-P1/80--first passage, 80% confluence) rat cardiac fibroblasts were exposed to cyclic stretch (biaxial, 1 Hz), which enhanced FAK phosphorylation at Tyr397. Proliferation (anti-5-bromo-2'-deoxyuridine and anti-Ki67 nuclear labelling), differentiation into myofibroblasts (expression of alpha-smooth muscle actin--alpha-SMA), and the activity of matrix metalloproteinase-2 were equally enhanced in stretched NF-P3/80 and AF-P1/80. Treatment with the integrin inhibitor RGD peptide impaired FAK phosphorylation and increased apoptosis (TUNEL) in non-stretched and stretched NF-P3/80, whereas FAK silencing induced by small interfering RNA modestly enhanced apoptosis only in stretched cells. RGD peptide or FAK silencing suppressed the activation of NF-P3/80 invoked by cyclic stretch. In addition, NF-P3/80 depleted of FAK were defective in AKT Ser473, TSC-2 Thr1462, and S6 kinase Thr389 phosphorylation induced by cyclic stretch. The activation of NF-P3/80 invoked by cyclic stretch was prevented by pre-treatment with the mammalian target of rapamycin (mTOR) inhibitor rapamycin, whereas supplementation with the amino acid, leucine, activated S6K and rescued the stretch-induced activation of NF-P3/80 depleted of FAK. CONCLUSIONS: These findings demonstrate a critical role for the mTOR complex, downstream from FAK, in mediating the activation of cardiac fibroblasts in response to mechanical stress.
机译:目的:心脏成纤维细胞被机械应力激活,但涉及的潜在机制仍知之甚少。在这项研究中,我们调查了黏着斑激酶(FAK)是否在响应循环牵张的心脏成纤维细胞活化中起作用。方法和结果:新生大鼠(NF-P3 / 80-第三代,融合度为80%)和成年(AF-P1 / 80-第一代,融合度为80%)大鼠成纤维细胞暴露于周期性拉伸(双轴,1 Hz) ),可增强Tyr397的FAK磷酸化。增殖(抗5-溴2'-脱氧尿苷和抗Ki67核标记),分化为成肌纤维细胞(α-平滑肌肌动蛋白-α-SMA的表达)和基质金属蛋白酶2的活性在拉伸NF-P3 / 80和AF-P1 / 80。用整联蛋白抑制剂RGD肽处理会破坏未拉伸和拉伸的NF-P3 / 80中的FAK磷酸化并增加细胞凋亡(TUNEL),而由小分子干扰RNA诱导的FAK沉默仅在拉伸细胞中适度增强了细胞凋亡。 RGD肽或FAK沉默抑制了循环拉伸激活的NF-P3 / 80的激活。此外,耗尽FAK的NF-P3 / 80在由循环拉伸诱导的AKT Ser473,TSC-2 Thr1462和S6激酶Thr389磷酸化中有缺陷。通过用哺乳动物雷帕霉素(mTOR)抑制剂雷帕霉素进行预处理,可以防止循环拉伸激活的NF-P3 / 80激活,而氨基酸,亮氨酸的补充则激活了S6K,并挽救了拉伸诱导的NF激活。 -P3 / 80的FAK耗尽。结论:这些发现表明FAK下游的mTOR复合体在介导对机械压力的心脏成纤维细胞活化中起关键作用。

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