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首页> 外文期刊>Neurogastroenterology and motility >The influence of Hox genes and three intercellular signalling pathways on enteric neuromuscular development.
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The influence of Hox genes and three intercellular signalling pathways on enteric neuromuscular development.

机译:Hox基因和三个细胞间信号通路对肠神经肌肉发育的影响。

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摘要

Normal intestinal motility requires orderly development of the complex nerve plexuses and smooth muscular layers in the gut wall. Organization of these structures results, in part, from cell autonomous programmes directed by transcription factors, which orchestrate appropriate temporal and spatial expression of specific target genes. Hox proteins appear to function in combination to dictate regional codes that establish major structural landmarks in the gut such as sphincters and muscle layers. These codes are translated in part by intercellular signals, which allow populations of cells in the embryonic gut wall to alter the developmental fate of their neighbours. Some of the best characterized intercellular signalling pathways involved in enteric neurodevelopment are mediated by GDNF/GFRa1/RET, EDN3/ENDRB, and NETRINS/DCC. These signals affect enteric neural precursors as they colonize the gut, and perturbations of these molecules are associated with various types of intestinal neuropathology.
机译:正常的肠动力需要复杂的神经丛和肠壁平滑肌层的有序发展。这些结构的组织部分是由受转录因子指导的细胞自主程序产生的,该程序负责协调特定靶基因的适当时空表达。 Hox蛋白似乎可以共同发挥作用,从而决定在肠道中建立主要结构标志(例如括约肌和肌肉层)的区域代码。这些代码部分地由细胞间信号翻译,从而使胚胎肠壁中的细胞群改变其邻居的发育命运。 GDNF / GFRa1 / RET,EDN3 / ENDRB和NETRINS / DCC介导了与肠神经发育有关的某些特征最丰富的细胞间信号通路。这些信号在肠道中定居时会影响肠道神经前体,这些分子的扰动与各种类型的肠道神经病理学有关。

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