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中枢神经系统中线细胞协调果蝇腹侧神经外胚层的正常细胞周期进程和身份确定。

The CNS midline cells coordinate proper cell cycle progression and identity determination of the Drosophila ventral neuroectoderm.

作者信息

Chang J, Kim I O, Ahn J S, Kwon J S, Jeon S H, Kim S H

机构信息

Department of Chemistry, Konkuk University, Seoul, 143-701, Korea.

出版信息

Dev Biol. 2000 Nov 15;227(2):307-23. doi: 10.1006/dbio.2000.9905.

Abstract

The CNS midline cells, specified by the single-minded (sim) gene, are required for the proper patterning of the ventral CNS and epidermis, which are derived from the Drosophila ventral neuroectoderm. Defects in the sim mutant are characterized by the loss of the gene expression, which is required for the proper formation of the ventral neurons and epidermis, and by a decrease in the spacing of longitudinal and commissural axon tracks. Molecular and cellular mechanisms for these defects were analyzed to elucidate the precise role of the CNS midline cells in proper patterning of the ventral neuroectoderm during embryonic neurogenesis. These analyses showed that the ventral neuroectoderm in the sim mutant fails to carry out its proper formation and characteristic cell division cycle. This resulted in the loss of the dividing neuroectodermal cells that are located ventral to the CNS midline. The CNS midline cells are also required for the cell cycle-independent expression of the neural and epidermal markers. This indicates that the CNS midline cells are essential for the establishment and maintenance of the ventral epidermal and neuronal cell lineage by cell-cell interaction. On the other hand, the CNS midline cells do not cause extensive cell death in the ventral neuroectoderm. This study indicates that the CNS midline cells play important roles in the coordination of the proper cell cycle progression and the correct identity determination of the adjacent ventral neuroectoderm along the dorsoventral axis.

摘要

由单-minded(sim)基因指定的中枢神经系统中线细胞,对于源自果蝇腹侧神经外胚层的腹侧中枢神经系统和表皮的正确模式形成是必需的。sim突变体中的缺陷表现为基因表达的丧失,这是腹侧神经元和表皮正常形成所必需的,并且纵向和连合轴突轨迹的间距减小。分析了这些缺陷的分子和细胞机制,以阐明中枢神经系统中线细胞在胚胎神经发生过程中腹侧神经外胚层正确模式形成中的精确作用。这些分析表明,sim突变体中的腹侧神经外胚层未能进行其正常形成和特征性细胞分裂周期。这导致位于中枢神经系统中线腹侧的分裂神经外胚层细胞的丧失。中枢神经系统中线细胞对于神经和表皮标志物的细胞周期非依赖性表达也是必需的。这表明中枢神经系统中线细胞对于通过细胞间相互作用建立和维持腹侧表皮和神经元细胞谱系至关重要。另一方面,中枢神经系统中线细胞不会在腹侧神经外胚层中引起广泛的细胞死亡。这项研究表明,中枢神经系统中线细胞在协调正确的细胞周期进程和沿背腹轴对相邻腹侧神经外胚层的正确身份确定中起重要作用。

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