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Src-dependent repression of ARF6 is required to maintain podosome-rich sealing zones in bone-digesting osteoclasts

机译:需要Src依赖的ARF6抑制才能维持破骨细胞中富含足小体的密封区

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摘要

Bone digestion occurs when osteoclasts adhere onto bone surfaces and polarize to form acidic, hydrolase-rich resorption lacunae. For this process, they condense their actin-rich podosomes in tight belts to establish sealing zones, which segregate their basal membranes from those facing resorption lacunae. This polarization process remains poorly understood. Here, we combined quantitative proteomics and gene silencing to identify new substrates of the Src tyrosine kinase, a key regulator of osteoclast function. We now report that a depletion of the ARF GTPase-activating protein GIT2, which localizes to sealing zones upon Src phosphorylation, or a lack of GTP hydrolysis on ARF6 impairs sealing zone formation and polarized membrane traffic. Surprisingly, the Rho guanine nucleotide exchange factors α and β PIX, which usually coordinate ARF and Rho signaling, were found to be dispensable. We conclude that the Src-dependent localization of GIT2 is essential for down-regulating ARF6 activity at sealing zones, and thus for maintaining osteoclast polarity.
机译:当破骨细胞粘附在骨骼表面并极化形成酸性的,富含水解酶的吸收腔时,就会发生骨骼消化。对于这一过程,他们将其富含肌动蛋白的足小体凝结在紧紧的带中,以建立密封区域,从而将其基底膜与面对吸收腔的膜隔离开。这种极化过程仍然知之甚少。在这里,我们结合了定量蛋白质组学和基因沉默技术,以确定破骨细胞功能的关键调节剂Src酪氨酸激酶的新底物。我们现在报告,ARF GTPase激活蛋白GIT2的耗竭(它在Src磷酸化时定位在密封区上)或在ARF6上缺乏GTP水解会损害密封区的形成和极化的膜运输。令人惊讶地,发现通常协调ARF和Rho信号传导的Rho鸟嘌呤核苷酸交换因子α和βPIX是可有可无的。我们得出结论,GIT2的Src依赖性定位对于下调封闭区域的ARF6活性至关重要,因此对于维持破骨细胞极性也至关重要。

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