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src64 and tec29 are required for microfilament contraction during Drosophila cellularization.

机译:果蝇细胞化过程中微丝收缩需要src64和tec29。

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Formation of the Drosophila cellular blastoderm involves both membrane invagination and cytoskeletal regulation. Mutations in src64 and tec29 reveal a novel role for these genes in controlling contraction of the actin-myosin microfilament ring during this process. Although membrane invagination still proceeds in mutant embryos, its depth is not uniform, and basal closure of the cells does not occur during late cellularization. Double-mutant analysis between scraps, a mutation in anillin that eliminates microfilament rings, and bottleneck suggests that microfilaments can still contract even though they are not organized into rings. However, the failure of rings to contract in the src64 bottleneck double mutant suggests that src64 is required for microfilament ring contraction even in the absence of Bottleneck protein. Our results suggest that src64-dependent microfilament ring contraction is resisted by Bottleneck to create tension and coordinate membrane invagination during early cellularization. The absence of Bottleneck during late cellularization allows src64-dependent microfilament ring constriction to drive basal closure.
机译:果蝇细胞胚盘的形成涉及膜内陷和细胞骨架调节。 src64和tec29中的突变揭示了这些基因在控制肌动蛋白-肌球蛋白微丝环收缩过程中的新作用。尽管膜的内陷仍在突变的胚胎中进行,但其深度并不均匀,并且在晚期细胞化过程中不会发生细胞的基底关闭。碎片之间的双突变分析,消除了微丝环的茴香油中的突变和瓶颈之间的双重突变分析表明,即使微丝没有组织成环,它们仍然可以收缩。但是,src64瓶颈双突变体中环的收缩失败表明,即使在没有瓶颈蛋白的情况下,src64也是微丝环收缩所必需的。我们的结果表明,在早期细胞化过程中,瓶颈抑制了src64依赖性微丝环收缩,从而产生张力并协调膜的内陷。在晚期细胞化过程中不存在瓶颈,从而使src64依赖性微丝环收缩来驱动基底闭合。

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