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Asymmetric distribution of metals in the Xenopus laevis oocyte: a synchrotron X-ray fluorescence microprobe study.

机译:非洲爪蟾卵母细胞中金属的不对称分布:同步加速器X射线荧光微探针研究。

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摘要

The asymmetric distribution of many components of the Xenopus oocyte, including RNA, proteins, and pigment, provides a framework for cellular specialization during development. During maturation, Xenopus oocytes also acquire metals needed for development, but apart from zinc, little is known about their distribution. Synchrotron X-ray fluorescence microprobe was used to map iron, copper, and zinc and the metalloid selenium in a whole oocyte. Iron, zinc, and copper were asymmetrically distributed in the cytoplasm, while selenium and copper were more abundant in the nucleus. A zone of high copper and zinc was seen in the animal pole cytoplasm. Iron was also concentrated in the animal pole but did not colocalize with zinc, copper, or pigment accumulations. This asymmetry of metal deposition may be important for normal development. Synchrotron X-ray fluorescence microprobe will be a useful tool to examine how metals accumulate and redistribute during fertilization and embryonic development.
机译:爪蟾卵母细胞许多成分的不对称分布,包括RNA,蛋白质和色素,为发育过程中的细胞专一化提供了框架。在成熟过程中,非洲爪蟾卵母细胞还获得发育所需的金属,但除锌外,对其分布了解甚少。同步加速器X射线荧光微探针用于绘制整个卵母细胞中铁,铜,锌和准金属硒的图。铁,锌和铜在细胞质中不对称分布,而硒和铜在细胞核中更丰富。在动物极细胞质中发现了高铜和锌的区域。铁也集中在动物极中,但没有与锌,铜或色素积聚共存。金属沉积的这种不对称性对于正常的发展可能很重要。同步加速器X射线荧光微探针将是检查金属在受精和胚胎发育过程中如何积累和重新分布的有用工具。

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