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Shroom3 和 Pitx2-N-钙黏蛋白通路协同作用,在肠道形态发生过程中产生不对称的细胞形状变化。

Shroom3 and a Pitx2-N-cadherin pathway function cooperatively to generate asymmetric cell shape changes during gut morphogenesis.

机构信息

The Visual Systems Group, Children's Hospital Research Foundation, USA.

出版信息

Dev Biol. 2011 Sep 1;357(1):227-34. doi: 10.1016/j.ydbio.2011.06.027. Epub 2011 Jun 25.

Abstract

The cytoskeletal protein Shroom3 is a potent inducer of epithelial cell shape change and is required for lens and neural plate morphogenesis. Analysis of gut morphogenesis in Shroom3 deficient mouse embryos revealed that the direction of gut rotation is also disrupted. It was recently established that Pitx2-dependent, asymmetrical cellular behaviors in the dorsal mesentery (DM) of the early mid-gut, a structure connecting the gut-tube to the rest of the embryo, contribute to the direction of gut rotation in chicken embryos by influencing the direction of the dorsal mesenteric tilt. Asymmetric cell shapes in the DM epithelium are hypothesized to contribute to the tilt, however, it is unclear what lies downstream of Pitx2 to alter epithelial cell shape. The cells of the left DM epithelium in either Pitx2 or Shroom3 deficient embryos are shorter and wider than those in control embryos and resemble the shape of those on the right, demonstrating that like Pitx2, Shroom3 is required for cell shape asymmetry and the leftward DM tilt. Because N-cadherin expression is specific to the left side and is Pitx2 dependent, we determined whether Shroom3 and N-cadherin function together to regulate cell shape in the left DM epithelium. Analysis of mouse embryos lacking one allele of both Shroom3 and N-cadherin revealed that they possess shorter and wider left epithelial DM cells when compared with Shroom3 or N-cadherin heterozygous embryos. This indicates a genetic interaction. Together these data provide evidence that Shroom3 and N-cadherin function cooperatively downstream of Pitx2 to directly regulate cell shape changes necessary for early gut tube morphogenesis.

摘要

细胞骨架蛋白 Shroom3 是一种有效的上皮细胞形态变化诱导因子,是晶状体和神经板形态发生所必需的。对 Shroom3 缺陷型小鼠胚胎肠道形态发生的分析表明,肠道旋转的方向也被打乱了。最近的研究表明,早期中肠背系膜(DM)中依赖 Pitx2 的不对称细胞行为,这是连接肠道管与胚胎其他部分的结构,通过影响背系膜倾斜的方向,对鸡胚肠道旋转的方向有贡献。DM 上皮中的不对称细胞形状被假设为导致倾斜的原因,但尚不清楚 Pitx2 下游有什么可以改变上皮细胞的形状。Pitx2 或 Shroom3 缺陷型胚胎中的左 DM 上皮细胞比对照胚胎中的细胞更短、更宽,并且类似于右侧细胞的形状,这表明像 Pitx2 一样,Shroom3 是细胞形状不对称和左向 DM 倾斜所必需的。由于 N-钙黏蛋白的表达是特定于左侧的,并且依赖于 Pitx2,我们确定 Shroom3 和 N-钙黏蛋白是否共同作用来调节左 DM 上皮细胞的形状。分析缺乏 Shroom3 和 N-钙黏蛋白一个等位基因的小鼠胚胎表明,与 Shroom3 或 N-钙黏蛋白杂合胚胎相比,它们的左上皮 DM 细胞更短、更宽。这表明存在遗传相互作用。这些数据表明,Shroom3 和 N-钙黏蛋白在 Pitx2 下游共同作用,直接调节早期肠道管形态发生所需的细胞形状变化。

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