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kette and blown fuse interact genetically during the second fusion step of myogenesis in Drosophila.

机译:果蝇肌形成的第二个融合步骤中,药盒和吹制的保险丝发生遗传相互作用。

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Drosophila myoblast fusion proceeds in two steps. The first one gives rise to small syncytia, the muscle precursor cells, which then recruit further fusion competent myoblasts to reach the final muscle size. We have identified Kette as an essential component for myoblast fusion. In kette mutants, founder cells and fusion-competent myoblasts are determined correctly and overcome the very first fusion. But then, at the precursor cell stage, fusion is interrupted. At the ultrastructural level, fusion is characterised by cell-cell recognition, alignment, formation of prefusion complexes, electron dense plaques and membrane breakdown. In kette mutants, electron dense plaques of aberrant length accumulate and fusion is interrupted owing to a complete failure of membrane breakdown. Furthermore, we show that kette interacts genetically with blown fuse (blow) which is known to be required to proceed from prefusion complexes to the formation of the electron dense plaques. Interestingly, a surplus of Kette can replace Blow function during myogenesis. We propose a model in which Dumbfounded/Sticks and stones-dependent cell adhesion is mediated over Rolling Pebbles, Myoblast city, Crk, Blown fuse and Kette, and thus induces membrane fusion.
机译:果蝇成肌细胞融合过程分为两个步骤。第一个产生小的合胞体,即肌肉前体细胞,然后再募集更多具有融合能力的成肌细胞,以达到最终的肌肉大小。我们已经确定Kette是成肌细胞融合的重要组成部分。在kette突变体中,正确确定了基础细胞和具有融合能力的成肌细胞,并克服了第一次融合。但是随后,在前体细胞阶段,融合被中断了。在超微结构水平上,融合的特征是细胞间识别,排列,融合前复合物的形成,电子致密斑和膜破裂。在凯特突变体中,由于膜破裂的完全失败,异常长度的电子致密斑块积聚并融合。此外,我们显示了凯特与吹熔丝(熔丝)发生了遗传相互作用,而熔丝(熔丝)已知是从预融合复合物到形成电子致密斑块所必需的。有趣的是,多余的Kette可以在成肌过程中取代Blow功能。我们提出了一种模型,其中在滚动卵石,成肌细胞城市,Crk,吹熔丝和Kette上介导了Dumbfounded / Sticks和石头依赖的细胞粘附,从而诱导了膜融合。

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