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Epidermal loss of Gαq confers a migratory and differentiation defect in keratinocytes

机译:Gαq的表皮损失赋予角质形成细胞迁移和分化缺陷

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摘要

G-protein coupled receptors (GPCRs), which activate heterotrimeric G proteins, are an essential class of transmembrane receptors that are responsible for a myriad of signaling events in normal and pathologic conditions. Two members of the G protein family, Gαq and Gα11, activate one of the main GPCR pathways and function as oncogenes by integrating mitogen-stimulated signaling cascades that are active under malignant conditions. Recently, it has been shown that targeted deletion of Gα11 and Gαq from endothelial cells impairs the Rho-mediated formation of focal adherens junctions, suggesting that Gα11/q signaling may also play a significant role in cytoskeletal-mediated cellular responses in epithelial cells. Indeed, combined deletion of Gα11 and Gαq confers a significant migratory defect in keratinocytes that delays cutaneous wound healing in an in vivo setting. This delay can be attributed to a defect during the reepithelialization phase due to significantly attenuated migratory capacity of Gαq-null keratinocytes under combined Gα11 deficiency. In fact, cells lacking Gα11/q demonstrate a severely reduced ability to respond to mitogenic and migratory signals in the microenvironment, leading to inappropriate and premature terminal differentiation. These results suggest that Gα11/q signaling pathways may be critical for integrating mitogenic signals and cytoskeletal function to achieve normal physiological responses. Emergence of a malignant phenotype may therefore arise from both under- and overexpression of Gα11/q signaling, implicating its upstream regulation as a potential therapeutic target in a host of pathologic conditions.
机译:激活异源三聚体G蛋白的G蛋白偶联受体(GPCR)是一类重要的跨膜受体,负责正常和病理情况下的大量信号事件。 G蛋白家族的两个成员Gαq和Gα11激活了一条主要的GPCR途径,并通过整合在恶性条件下活跃的有丝分裂原刺激的信号级联反应而充当癌基因。近来,已经表明从内皮细胞中靶向删除Gα11和Gαq会损害Rho介导的粘着斑连接的形成,这表明Gα11/ q信号传导也可能在上皮细胞的细胞骨架介导的细胞应答中起重要作用。实际上,Gα11和Gαq的组合缺失赋予角质形成细胞显着的迁移缺陷,这延迟了体内环境中皮肤伤口的愈合。这种延迟可以归因于在重新上皮化阶段的缺陷,这是由于在联合的Gα11缺乏症下,Gαq无效的角质形成细胞的迁移能力显着减弱。实际上,缺乏Gα11/ q的细胞表现出在微环境中对促有丝分裂和迁移信号的反应能力大大降低,导致不适当的过早的终末分化。这些结果表明,Gα11/ q信号通路对于整合有丝分裂信号和细胞骨架功能以实现正常的生理反应可能至关重要。因此,Gα11/ q信号的过低表达和过度表达都可能导致恶性表型的出现,这暗示其上游调节是许多病理状况中潜在的治疗靶点。

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