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Single-molecule dynamics of the P granule scaffold MEG-3 in the Caenorhabditis elegans zygote

机译:秀丽隐杆线虫合子中P颗粒支架MEG-3的单分子动力学。

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During the asymmetric division of the Caenorhabditis elegans zygote, germ (P) granules are disassembled in the anterior cytoplasm and stabilized/assembled in the posterior cytoplasm, leading to their inheritance by the germline daughter cell. P granule segregation depends on MEG (maternal-effect germline defective)-3 and MEG-4, which are enriched in P granules and in the posterior cytoplasm surrounding P granules. Here we use single-molecule imaging and tracking to characterize the reaction/diffusion mechanisms that result in MEG-3::Halo segregation. We find that the anteriorly enriched RNA-binding proteins MEX (muscle excess)-5 and MEX-6 suppress the retention of MEG-3 in the anterior cytoplasm, leading to MEG-3 enrichment in the posterior. We provide evidence that MEX-5/6 may work in conjunction with PLK-1 kinase to suppress MEG-3 retention in the anterior. Surprisingly, we find that the retention of MEG-3::Halo in the posterior cytoplasm surrounding P granules does not appear to contribute significantly to the maintenance of P granule asymmetry. Rather, our findings suggest that the formation of the MEG-3 concentration gradient and the segregation of P granules are two parallel manifestations of MEG-3′s response to upstream polarity cues.
机译:在秀丽隐杆线虫合子的不对称分裂过程中,胚芽(P)颗粒在前细胞质中解体,并在后细胞质中稳定/组装,导致它们由种系子代细胞遗传。 P颗粒的分离取决于MEG(母体效应种系缺陷)-3和MEG-4,它们富含P颗粒和P颗粒周围的后胞质。在这里,我们使用单分子成像和跟踪来表征导致MEG-3 :: Halo分离的反应/扩散机制。我们发现,前向富集的RNA结合蛋白MEX(肌肉过量)-5和MEX-6抑制了MEG-3在前胞质中的保留,导致MEG-3在后部富集。我们提供证据,MEX-5 / 6可能与PLK-1激酶协同作用,以抑制MEG-3在前壁的滞留。令人惊讶地,我们发现MEG-3 :: Halo在P颗粒周围的后细胞质中的保留似乎对维持P颗粒的不对称性没有显着贡献。相反,我们的发现表明,MEG-3浓度梯度的形成和P颗粒的分离是MEG-3对上游极性线索的响应的两个平行表现。

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