Pelegri F, Knaut H, Maischein H M, Schulte-Merker S, Nüsslein-Volhard C
Laboratory of Genetics, Max Planck Institut für Entwicklungsbiologie, Tübingen, Germany.
Curr Biol. 1999;9(24):1431-40. doi: 10.1016/s0960-9822(00)80112-8.
In many animals, embryonic patterning depends on a careful interplay between cell division and the segregation of localized cellular components. Both of these processes in turn rely on cytoskeletal elements and motor proteins. A type of localized cellular component found in most animals is the germ plasm, a specialized region of cytoplasm that specifies the germ-cell fate. The gene vasa has been shown in Drosophila to encode an essential component of the germ plasm and is thought to have a similar function in other organisms. In the zebrafish embryo, the vasa RNA is localized to the furrows of the early cellular divisions.
We identified the gene nebel in a pilot screen for zebrafish maternal-effect mutations. Embryos from females homozygous for a mutation in nebel exhibit defects in cell adhesion. Our analysis provides genetic evidence for a function of the microtubule array that normally develops at the furrow in the deposition of adhesive membrane at the cleavage plane. In addition, nebel mutant embryos show defects in the early localization of vasa RNA. The vasa RNA localization phenotype could be mimicked with microtubule-inhibiting drugs, and confocal microscopy suggests an interaction between microtubules and vasa-RNA-containing aggregates.
Our data support two functions for the microtubule reorganization at the furrow, one for the exocytosis of adhesive membrane, and another for the translocation of vasa RNA along the forming furrow.
在许多动物中,胚胎模式形成依赖于细胞分裂与局部细胞成分分离之间的精确相互作用。这两个过程反过来又依赖于细胞骨架成分和运动蛋白。在大多数动物中发现的一种局部细胞成分是生殖质,它是细胞质的一个特殊区域,决定生殖细胞的命运。在果蝇中,基因vasa已被证明编码生殖质的一个必需成分,并且在其他生物体中被认为具有类似功能。在斑马鱼胚胎中,vasa RNA定位于早期细胞分裂的沟处。
我们在斑马鱼母源效应突变的初步筛选中鉴定出基因nebel。nebel突变纯合雌性的胚胎表现出细胞黏附缺陷。我们的分析为微管阵列的功能提供了遗传学证据,微管阵列通常在沟处发育,参与在分裂平面沉积黏附膜。此外,nebel突变胚胎在vasa RNA的早期定位上表现出缺陷。vasa RNA定位表型可以用微管抑制药物模拟,共聚焦显微镜显示微管与含vasa - RNA的聚集体之间存在相互作用。
我们的数据支持沟处微管重组的两种功能,一种用于黏附膜的胞吐作用,另一种用于vasa RNA沿形成的沟的转运。