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首页> 外文期刊>Journal of Cell Science >The dynamics of fluorescently labeled endogenous gurken mRNA in Drosophila
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The dynamics of fluorescently labeled endogenous gurken mRNA in Drosophila

机译:果蝇中荧光标记的内源性古肯mRNA的动力学

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摘要

During Drosophila oogenesis, the targeted localization of gurken (grk) mRNA leads to the establishment of the axis polarity of the egg. In early stages of oogenesis, grk mRNA is found at the posterior of the oocyte, whereas in the later stages grk mRNA is positioned at the dorsal anterior corner of the oocyte. In order to visualize the real-time localization and anchorage of endogenous grk mRNA in living oocytes, we have utilized the MS2-MCP system. We show that MCP-GFP-tagged endogenous grk mRNA localizes properly within wild-type oocytes and behaves aberrantly in mutant backgrounds. Fluorescence recovery after photobleaching (FRAP) experiments of localized grk mRNA in egg chambers reveal a difference in the dynamics of grk mRNA between young and older egg chambers. grk mRNA particles, as a population, are highly dynamic molecules that steadily lose their dynamic nature as oogenesis progresses. This difference in dynamics is attenuated in K10 and sqd(1) mutants such that mislocalized grk mRNA in older stages is much more dynamic compared with that in wild-type controls. By contrast, in flies with compromised dynein activity, properly localized grk mRNA is much more static. Taken together, we have observed the nature of localized grk mRNA in live oocytes and propose that its maintenance changes from a dynamic to a static process as oogenesis progresses.
机译:在果蝇卵子发生过程中,古尔肯(grk)mRNA的靶向定位导致卵轴极性的建立。在卵子发生的早期阶段,在卵母细胞的后部发现了grk mRNA,而在晚期卵白细胞的grk mRNA则位于卵母细胞的背角。为了可视化活卵母细胞中内源性grk mRNA的实时定位和锚定,我们利用了MS2-MCP系统。我们显示,MCP-GFP标记的内源性grk mRNA在野生型卵母细胞内正确定位,并在突变背景中表现异常。蛋室中局部grk mRNA的光漂白(FRAP)实验后的荧光恢复揭示了年轻蛋室和旧蛋室之间grk mRNA动态的差异。作为种群,grk mRNA颗粒是高度动态的分子,随着卵子发生的进展,它们逐渐失去其动态特性。在K10和sqd(1)突变体中,这种动态差异有所减弱,因此与野生型对照相比,在较早阶段错误定位的grk mRNA更具动态性。相反,在动力蛋白活性受损的果蝇中,正确定位的grk mRNA更静态。综上所述,我们已经观察到了活卵母细胞中本地化的grk mRNA的本质,并提出随着卵子发生的进展,其维持过程从动态过程变为静态过程。

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