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Kit Signaling Is Required for Development of Coordinated Motility Patterns in Zebrafish Gastrointestinal Tract

机译:斑马鱼胃肠道协调运动模式的发展需要工具包信号

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摘要

Interstitial cells of Cajal (ICC) provide a pacemaker signal for coordinated motility patterns in the mammalian gastrointestinal (GI) tract. Kit signaling is required for development and maintenance of ICC, and these cells can be identified by Kit-like immunoreactivity. The zebrafish GI tract has two distinct ICC networks similar to mammals, suggesting a similar role in the generation of GI motility; however, a functional role for Kit-positive cells in zebrafish has not been determined. Analysis of GI motility in intact zebrafish larvae was performed during development and after disruption of Kit signaling. Development of coordinated motility patterns occurred after 5 days post-fertilization (dpf) and correlated with appearance of Kit-positive cells. Disruptions of Kit signaling using the Kit antagonist imatinib mesylate, and in Sparse, a null kita mutant, also disrupted development of coordinated motility patterns. These data suggest that Kit signaling is necessary for development of coordinated motility patterns and that Kit-positive cells in zebrafish are necessary for coordinated motility patterns.
机译:Cajal间质细胞(ICC)为哺乳动物胃肠道(GI)的协调运动模式提供起搏器信号。 Kit信号传导是ICC的发展和维持所必需的,这些细胞可以通过Kit-like免疫反应来鉴定。斑马鱼的胃肠道具有两个与哺乳动物相似的独立的ICC网络,表明在胃肠动力的产生中具有相似的作用。但是,尚未确定斑马鱼中Kit阳性细胞的功能性作用。完整的斑马鱼幼虫的胃肠动力分析在发育过程中和Kit信号转导后进行。受精后(dpf)5天后出现协调性运动模式的发展,并且与Kit阳性细胞的出现相关。使用Kit拮抗剂甲磺酸伊马替尼的Kit信号中断,以及在稀疏的kita突变体Sparse中,也破坏了协调运动模式的发展。这些数据表明Kit信号对于协调运动模式的发展是必需的,斑马鱼中Kit阳性细胞对于协调运动模式是必需的。

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