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Dynactin suppresses the retrograde movement of apically localized mRNA in Drosophila blastoderm embryos

机译:Dynactin抑制果蝇胚盘胚的根尖mRNA的逆行运动。

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Motor dependent transport of mRNA is a key mechanism in axis specification during development. Apical transport and anchoring of wingless and pair-rule transcripts in the Drosophila syncytial blastoderm embryo is mediated by cytoplasmic Dynein, the major minus end directed microtubule dependent molecular motor. Here, we show that, despite apical transport of mRNA being highly directional, mRNA particles often pause and move backward toward the plus ends of microtubules. We suggest that this retrograde movement helps overcome cellular obstructions. We show that the plus end movement of apical mRNA is independent of the major plus end microtubule motors Kinesin-1 and Kinesin-2. In contrast, Dynactin, a Dynein processivity factor, is required to suppress retrograde mRNA movements, as well as for efficient minus end motility. We propose that Dynein itself, rather than the activity of a plus end motor, is responsible for the plus end movements of the mRNA and that Dynactin is involved in preventing short reverse movements of the Dynein motor, known to occur in vitro.
机译:mRNA的运动依赖性转运是发育过程中轴规格的关键机制。果蝇合胞体胚盘胚中无翅和成对规则的转录本的顶端运输和锚定是由细胞质动力蛋白(主要负端定向的微管依赖性分子运动)介导的。在这里,我们显示,尽管mRNA的顶端转运具有高度的方向性,但mRNA颗粒经常会停下来并向微管的正向移动。我们建议这种逆行运动有助于克服细胞阻塞。我们显示顶端mRNA的正向运动独立于主要正向微管运动Kinesin-1和Kinesin-2。相反,Dynactin是Dynein的一种生产力因子,它需要抑制逆行mRNA的运动以及有效的负末端运动性。我们提出,达因本身本身而不是正向运动的活动是mRNA的正向运动的原因,而动态肌动蛋白则参与了防止在体外发生的达因运动的短暂反向运动的作用。

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