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首页> 外文期刊>American Journal of Physiology >Redox control of Cas phosphorylation requires Abl kinase in regulation of intestinal epithelial cell spreading and migration
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Redox control of Cas phosphorylation requires Abl kinase in regulation of intestinal epithelial cell spreading and migration

机译:CAS磷酸化的氧化还原控制需要Abl激酶在调节肠上皮细胞扩散和迁移中

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摘要

Intestinal wounds often occur during inflammatory and ischemic disorders of the gut. To repair damage, intestinal epithelial cells must rapidly spread and migrate to cover exposed lamina propria, events that involve redox signaling. Wounds are subject to extensive redox alterations, particularly resulting from H_2O_2 produced in the adjacent tissue by both the epithelium and emigrating leukocytes. The mechanisms governing these processes are not fully understood, particularly at the level of protein signaling. Crk-associated substrate, or Cas, is an important signaling protein known to modulate focal adhesion and actin cytoskeletal dynamics, whose association with Crk is regulated by Abl kinase, a ubiquitously expressed tyrosine kinase. We sought to evaluate the role of Abl regulation of Cas at the level of cell spreading and migration during wound closure. As a model, we used intestinal epithelial cells exposed to H_2O_2 or scratch wounded to assess the Abl-Cas signaling pathway. We characterized the localization of phosphorylated Cas in mouse colonic epithelium under baseline conditions and after biopsy wounding the mucosa. Analysis of actin and focal adhesion dynamics by microscopy or biochemical analysis after manipulating Abl kinase revealed that Abl controls redox-dependent Cas phosphorylation and localization to influence cell spreading and migration. Collectively, our data shed new light on redox-sensitive protein signaling modules controlling intestinal wound healing.
机译:肠道伤口经常发生在肠道的炎症和缺血性疾病期间。为了修复损伤,肠上皮细胞必须迅速蔓延和迁移以覆盖涉及氧化还原信号的事件。伤口受到广泛的氧化还原改变,特别是由上皮和移除白细胞在相邻组织中产生的H_2O_2产生。治疗这些过程的机制尚未完全理解,特别是在蛋白质信号传导的水平。 Crk相关的底物或CAS是已知调节局部粘附和肌动蛋白细胞骨骼动态的重要信号蛋白,其与CRK的关联由ABL激酶调节,普遍地表达酪氨酸激酶。我们试图评估CA的ABL调节在伤口闭合期间的细胞扩散和迁移水平。作为模型,我们使用暴露于H_2O_2的肠上皮细胞或伤口划痕以评估ABL-CAS信号通路。我们在基线条件下表征了小鼠结肠上皮中磷酸化CA的定位,并在粘膜伤害后的活检后。通过显微镜或生物化学分析在操纵ABL激酶后分析肌动蛋白和局灶性粘附动力学揭示ABL控制依赖氧氧依赖性CA磷酸化和定位以影响细胞扩散和迁移。统称,我们的数据缩小了氧化还原敏感蛋白信号调节模块的新光,控制肠道伤口愈合。

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