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Focal Adhesion Kinase Is Important for Fluid Shear Stress–Induced Mechanotransduction in Osteoblasts

机译:黏着斑激酶对于成骨细胞中流体剪切应力诱导的机械转导很重要

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摘要

Mechanical loading of bone is important for maintenance of bone mass and structural stability of the skeleton. When bone is mechanically loaded, movement of fluid within the spaces surrounding bone cells generates fluid shear stress (FSS) that stimulates osteoblasts, resulting in enhanced anabolic activity. The mechanisms by which osteoblasts convert the external stimulation of FSS into biochemical changes, a process known as mechanotransduction, remain poorly understood. Focal adhesions are prime candidates for transducing external stimuli. Focal adhesion kinase (FAK), a nonreceptor tyrosine kinase found in focal adhesions, may play a key role in mechanotransduction, although its function has not been directly examined in osteoblasts. We examined the role of FAK in osteoblast mechanotransduction using short interfering RNA (siRNA), overexpression of a dominant negative FAK, and FAK−/− osteoblasts to disrupt FAK function in calvarial osteoblasts. Osteoblasts were subjected to varying periods oscillatory fluid flow (OFF) from 5 min to 4 h, and several physiologically important readouts of mechanotransduction were analyzed including: extracellular signal-related kinase 1/2 phosphorylation, upregulation of c-fos, cyclooxygenase-2, and osteopontin, and release of prostaglandin E2. Osteoblasts with disrupted FAK signaling exhibited severely impaired mechanical responses in all endpoints examined. These data indicate the importance of FAK for both short and long periods of FSS-induced mechanotransduction in osteoblasts.
机译:骨骼的机械负载对于维持骨骼质量和骨骼的结构稳定性很重要。当骨骼受到机械加载时,骨骼细胞周围空间内的液体运动会产生液体切应力(FSS),从而刺激成骨细胞,从而增强合成代谢活性。成骨细胞将FSS的外部刺激转化为生物化学变化(称为机械转导的过程)的机制仍知之甚少。局灶性粘连是转导外部刺激的主要候选者。粘着斑激酶(FAK)是一种在粘着斑中发现的非受体酪氨酸激酶,尽管其功能尚未在成骨细胞中直接检查,但可能在机械转导中起关键作用。我们检查了FAK在使用短干扰RNA(siRNA),过度表达显性负FAK和FAK-/-成骨细胞破坏成骨成骨细胞中FAK功能的成骨细胞机械转导中的作用。从5分钟到4小时,成骨细胞经历不同的振荡流体流量(OFF),并分析了机械转导的一些重要生理学读数,包括:细胞外信号相关激酶1/2磷酸化,c-fos上调,环氧合酶-2,和骨桥蛋白,并释放前列腺素E2。 FAK信号被破坏的成骨细胞在所有检查的终点均表现出严重的机械反应受损。这些数据表明FAK对于成骨细胞中FSS诱导的机械转导的短期和长期均很重要。

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