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首页> 外文期刊>Development >Synergistic activities of alpha3 and alpha6 integrins are required during apical ectodermal ridge formation and organogenesis in the mouse.
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Synergistic activities of alpha3 and alpha6 integrins are required during apical ectodermal ridge formation and organogenesis in the mouse.

机译:在小鼠的顶外胚层形成和器官发生过程中需要alpha3和alpha6整合素的协同活性。

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摘要

Integrins alpha6beta1 and alpha6beta4 are cell surface receptors for laminins. Integrin alpha6-null mice die at birth with severe skin blistering and defects in the cerebral cortex and in the retina. Integrin alpha3beta1 can associate with laminins and other ligands. Integrin alpha3-null mice also die at birth, with kidney and lung defects at late stages of development, and moderate skin blistering. To investigate possible overlapping functions between alpha3 and alpha6 integrins, we analyzed the phenotype of compound alpha3-/-/alpha6-/- mutant embryos. Double homozygous mutant embryos were growth-retarded and displayed several developmental defects not observed in the single mutant animals. First, limb abnormalities characterized by an absence of digit separation and the fusion of preskeletal elements were observed. Further analyses indicated a defect in the apical ectodermal ridge, an essential limb organizing center. In the double mutant, the ridge appeared flattened, and ridge cells did not show a columnar morphology. A strong reduction in ridge cell proliferation and alterations of the basal lamina underlying the ectoderm were observed. These results suggest that alpha3 and alpha6 integrins are required for the organization or compaction of presumptive apical ectodermal ridge cells into a distinct differentiated structure. Additional defects were present: an absence of neural tube closure, bilateral lung hypoplasia, and several abnormalities in the urogenital tract. Finally, an aggravation of brain and eye lamination defects was observed. The presence of novel phenotypes in double mutant embryos demonstrates the synergism between alpha3 and alpha6 integrins and their essential roles in multiple processes during embryogenesis.
机译:整合素α6beta1和α6beta4是层粘连蛋白的细胞表面受体。整合素α6无效的小鼠在出生时死亡,并伴有严重的皮肤水泡以及大脑皮层和视网膜的缺陷。整联蛋白alpha3beta1可以与层粘连蛋白和其他配体缔合。整联蛋白α3无效的小鼠在出生时也会死亡,在发育后期会出现肾脏和肺部缺陷,并出现中度皮肤起泡。为了研究alpha3和alpha6整联蛋白之间可能的重叠功能,我们分析了化合物alpha3-/-/ a​​lpha6-/-突变体胚胎的表型。双纯合突变体胚胎生长迟缓,并显示出几个发育缺陷,在单个突变体动物中未观察到。首先,观察到以手指分离缺失和前骨骼元素融合为特征的肢体异常。进一步的分析表明,根尖的外胚层a缺损,这是必不可少的肢体组织中心。在双突变体中,脊似乎变平,并且脊细胞没有显示出柱状形态。观察到脊细胞增殖的强烈减少和外胚层下面的基底层的改变。这些结果表明,α3和α6整合素是将假定的根尖外胚层细胞组织或压实成独特的分化结构所必需的。还存在其他缺陷:没有神经管闭合,双侧肺发育不全和泌尿生殖道异常。最后,观察到脑和眼层压缺陷的恶化。双突变体胚胎中新表型的存在证明了α3和α6整联蛋白之间的协同作用及其在胚胎发生过程中多个过程中的重要作用。

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