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首页> 外文期刊>BMC Developmental Biology >Apical accumulation of MARCKS in neural plate cells during neurulation in the chick embryo
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Apical accumulation of MARCKS in neural plate cells during neurulation in the chick embryo

机译:雏鸡胚胎培养过程中神经板细胞中MARCKS的顶端积累

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Background The neural tube is formed by morphogenetic movements largely dependent on cytoskeletal dynamics. Actin and many of its associated proteins have been proposed as important mediators of neurulation. For instance, mice deficient in MARCKS, an actin cross-linking membrane-associated protein that is regulated by PKC and other kinases, present severe developmental defects, including failure of cranial neural tube closure. Results To determine the distribution of MARCKS, and its possible relationships with actin during neurulation, chick embryos were transversely sectioned and double labeled with an anti-MARCKS polyclonal antibody and phalloidin. In the neural plate, MARCKS was found ubiquitously distributed at the periphery of the cells, being conspicuously accumulated in the apical cell region, in close proximity to the apical actin meshwork. This asymmetric distribution was particularly noticeable during the bending process. After the closure of the neural tube, the apically accumulated MARCKS disappeared, and this cell region became analogous to the other peripheral cell zones in its MARCKS content. Actin did not display analogous variations, remaining highly concentrated at the cell subapical territory. The transient apical accumulation of MARCKS was found throughout the neural tube axis. The analysis of another epithelial bending movement, during the formation of the lens vesicle, revealed an identical phenomenon. Conclusions MARCKS is transiently accumulated at the apical region of neural plate and lens placode cells during processes of bending. This asymmetric subcellular distribution of MARCKS starts before the onset of neural plate bending. These results suggest possible upstream regulatory actions of MARCKS on some functions of the actin subapical meshwork.
机译:背景技术神经管是由形态发生运动形成的,很大程度上依赖于细胞骨架动力学。肌动蛋白及其许多相关蛋白已被提议作为神经的重要介体。例如,缺乏MARCKS(一种受PKC和其他激酶调节的肌动蛋白交联膜相关蛋白)的小鼠表现出严重的发育缺陷,包括颅神经管闭合失败。结果为了确定MARCKS的分布及其在哺乳过程中与肌动蛋白的可能关系,将鸡胚横切,并用抗MARCKS多克隆抗体和鬼笔环肽进行双标记。在神经板中,发现MARCKS普遍分布在细胞的周围,明显地聚集在根尖肌动蛋白网的根尖细胞区域。这种不对称分布在弯曲过程中特别明显。在神经管关闭后,顶端积累的MARCKS消失了,该细胞区域的MARCKS含量与其他周围的细胞区域相似。肌动蛋白没有显示出类似的变异,而是高度集中在细胞的顶端下区域。在整个神经管轴上发现了MARCKS的暂时性根尖积累。在晶状体囊形成期间对另一种上皮弯曲运动的分析揭示了相同的现象。结论MARCKS在弯曲过程中短暂累积在神经板和晶状体斑块细胞的顶端区域。 MARCKS的这种不对称亚细胞分布在神经板弯曲开始之前就开始了。这些结果表明,MARCKS对肌动蛋白根尖下肌网的某些功能可能具有上游调节作用。

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