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Organization of Cytokeratin Cytoskeleton and Germ Plasm in the Vegetal Cortex of Xenopus Laevis Oocytes Depends on Coding and Non-Coding RNAs: Three-Dimensional and Ultrastructural Analysis

机译:非洲爪蟾卵母细胞植物皮质中细胞角蛋白细胞骨架和胚浆的组织取决于编码和非编码RNA:三维和超微结构分析

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摘要

Recent studies discovered a novel structural role of RNA in maintaining the integrity of the mitotic spindle and cellular cytoskeleton. In Xenopus laevis, noncoding Xlsirts and coding VegT RNAs play a structural role in anchoring localized RNAs, maintaining the organization of the cytokeratin cytoskeleton and germinal granules in the oocyte vegetal cortex, and subsequent development of the germline in the embryo. We studied the ultrastructural effects of antisense oligonucleotide driven ablation of Xlsirts and VegT RNAs on the organization of the cytokeratin, germ plasm and other components of the vegetal cortex. We developed a novel method to immunolabel and visualize cytokeratin at the electron microscopy level, which allowed us to reconstruct the ultrastructural organization of the cytokeratin network relative to the components of the vegetal cortex in Xenopus oocytes. The removal of Xlsirts and VegT RNAs not only disrupts the cytokeratin cytoskeleton but also has a profound transcript-specific effect on the anchoring and distribution of germ plasm islands and their germinal granules and the arrangement of yolk platelets within the vegetal cortex. We suggest that the cytokeratin cytoskeleton plays a role in anchoring of germ plasm islands within the vegetal cortex and germinal granules within the germ plasm islands.
机译:最近的研究发现,RNA在维持有丝分裂纺锤体和细胞骨架的完整性方面具有新颖的结构作用。在非洲爪蟾中,非编码的Xlsirts和编码的VegT RNA在锚定局部RNA,维持卵母细胞植物皮层中细胞角蛋白细胞骨架和生发颗粒的组织以及胚胎中种系的后续发育中发挥结构性作用。我们研究了反义寡核苷酸驱动的Xlsirts和VegT RNA消融对细胞角蛋白,种质和植物皮质其他成分组织的超微结构影响。我们开发了一种在电子显微镜下免疫标记和可视化细胞角蛋白的新方法,这使我们能够相对于非洲爪蟾卵母细胞中的植物皮层成分重建细胞角蛋白网络的超微结构。 Xlsirts和VegT RNA的去除不仅破坏细胞角蛋白的细胞骨架,而且对种质岛及其生发颗粒的锚定和分布以及植物皮层内的卵黄质血小板的排列具有深远的转录特异作用。我们建议细胞角蛋白的细胞骨架在植物皮层内的种质岛和种质岛内的生发颗粒锚定中起作用。

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