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首页> 外文期刊>Developmental biology >Non-muscle myosin IIA and IIB differentially regulate cell shape changes during zebrafish brain morphogenesis
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Non-muscle myosin IIA and IIB differentially regulate cell shape changes during zebrafish brain morphogenesis

机译:非肌肉肌球蛋白IIA和IIB差异调节斑马鱼脑形态发生过程中的细胞形状变化。

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摘要

During brain morphogenesis, the neuroepithelium must fold in specific regions to delineate functional units, and give rise to conserved embryonic brain shape. Individual cell shape changes are the basis for the morphogenetic events that occur during whole tissue shaping. We used the zebrafish to study the molecular mechanisms that regulate the first fold in the vertebrate brain, the highly conserved midbrain-hindbrain boundary (MHB). Since the contractile state of the neuroepithelium is tightly regulated by non-muscle myosin II (NMII) activity, we tested the role of NMIIA and NMIIB in regulating cell shape changes that occur during MHB morphogenesis. Using morpholino knockdown, we show that NMIIA and NMIIB are both required for normal MHB tissue angle. Quantification of cell shapes revealed that NMIIA is required for the shortening of cells specifically at the MHB constriction (MHBC), while NMIIB is required for the proper width of cells throughout the MHB region. NMIIA and NMIIB knockdown also correlated with abnormal distribution of actin within the cells of the MHBC. Thus, NMIIA and NMIIB perform distinct functions in regulating cell shape during MHB morphogenesis. (C) 2014 The Authors. Published by Elsevier Inc.
机译:在大脑形态发生过程中,神经上皮必须在特定区域折叠以描绘功能单元,并产生保守的胚胎脑形状。单个细胞形状的变化是整个组织成形过程中发生的形态发生事件的基础。我们使用斑马鱼研究了调节脊椎动物大脑中高度保守的中脑-后脑边界(MHB)的第一折叠的分子机制。由于神经上皮的收缩状态受到非肌肉肌球蛋白II(NMII)活性的严格调节,因此我们测试了NMIIA和NMIIB在调节MHB形态发生过程中发生的细胞形状变化中的作用。使用吗啉代基因敲低,我们表明正常MHB组织角都需要NMIIA和NMIIB。细胞形状的量化揭示了NMIIA是缩短MHB收缩处(MHBC)所需的细胞,而NMIIB是整个MHB区域中适当宽度的细胞所必需的。 NMIIA和NMIIB敲低还与MHBC细胞内肌动蛋白的异常分布有关。因此,在MHB形态发生过程中,NMIIA和NMIIB在调节细胞形状方面执行不同的功能。 (C)2014作者。由Elsevier Inc.发布

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