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Biochemical analysis of force-sensitive responses using a large-scale cell stretch device

机译:使用大型电池拉伸装置的力敏感响应的生化分析

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摘要

Physical force has emerged as a key regulator of tissue homeostasis, and plays an important role in embryogenesis, tissue regeneration, and disease progression. Currently, the details of protein interactions under elevated physical stress are largely missing, therefore, preventing the fundamental, molecular understanding of mechano-transduction. This is in part due to the difficulty isolating large quantities of cell lysates exposed to force-bearing conditions for biochemical analysis. We designed a simple, easy-to-fabricate, large-scale cell stretch device for the analysis of force-sensitive cell responses. Using proximal biotinylation (BioID) analysis or phospho-specific antibodies, we detected force-sensitive biochemical changes in cells exposed to prolonged cyclic substrate stretch. For example, using promiscuous biotin ligase BirA* tagged alpha-catenin, the biotinylation of myosin IIA increased with stretch, suggesting the close proximity of myosin IIA to alpha-catenin under a force bearing condition. Furthermore, using phospho-specific antibodies, Akt phosphorylation was reduced upon stretch while Src phosphorylation was unchanged. Interestingly, phosphorylation of GSK3 beta, a downstream effector of Akt pathway, was also reduced with stretch, while the phosphorylation of other Akt effectors was unchanged. These data suggest that the Akt-GSK3 beta pathway is force-sensitive. This simple cell stretch device enables biochemical analysis of force-sensitive responses and has potential to uncover molecules underlying mechanotransduction.
机译:物理力已成为组织稳态的关键调节因子,并在胚胎发生,组织再生和疾病进展中起重要作用。目前,在升高的物理压力下蛋白质相互作用的细节很大程度上缺失,因此防止了对机械转导的基本分子理解。这部分是由于难以隔离暴露于生化分析的力轴承条件的大量细胞裂解物。我们设计了一种简单,易于制造的大型电池拉伸装置,用于分析力敏感的细胞应答。使用近端生物素化(BioID)分析或磷酸特异性抗体,我们检测到暴露于长期环状衬底的细胞中的力敏感的生物化学变化。例如,使用混杂的生物素连接酶Bira *标记的α-catenin,肌霉素IIa的生物素化随着力量而增加,表明在力轴承条件下肌霉素IIa至α-连环蛋白的紧密接近。此外,使用磷酸特异性抗体,在拉伸时降低Akt磷酸化,而SRC磷酸化不变。有趣的是,GSK3β的磷酸化,Akt途径的下游效应器,延伸也减少,而其他AKT效应器的磷酸化不变。这些数据表明AKT-GSK3β途径是力敏感的。这种简单的细胞拉伸装置能够能够对力敏感反应的生化分析,并且具有潜在的机电展示潜在的分子。

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