在非洲爪蟾胚胎发生早期,t细胞内抗原1抵消体细胞RNA降解。

Diana Bauermeister, Maike Claussen, T. Pieler
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摘要

在非洲爪蟾(Xenopus laevis)中,定位于卵母细胞植物皮质的母体转录本在卵裂阶段被未来的生殖细胞特异性地遗传。在母系向合子转化(MZT)过程中,大部分母系转录本被降解,而与种系相关的转录本是稳定的。在胚胎MZT过程中,死端13 ' utr中的一个序列介导卵母细胞的植物定位,以及miR介导的体细胞清除和生殖细胞特异性稳定。我们可以确定Tia1与已知的植物定位RNPs成分在褐家鼠卵母细胞中共沉淀。Tia1与来自植物定位rna的各种定位元件相互作用并共定位。在青竹胚胎中,Tia1的异位表达抵消了dnd1定位元件报告RNA的体细胞降解,并与dnd1蛋白协同稳定报告RNA。异位Tia1还保护几种内源性定位和生殖细胞特异性mrna免受体细胞降解。因此,在胚胎MZT期间保护种系转录本免受miR介导的衰变的蛋白质可能结合这些已经在卵母细胞中的rna。
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T-cell internal antigen 1 counteracts somatic RNA degradation during early Xenopus embryogenesis.
In Xenopus laevis, maternal transcripts that localize to the vegetal cortex of the oocyte are specifically inherited by prospective germ cells during cleavage stages. While a large fraction of maternal transcripts is degraded during the maternal to zygotic transition (MZT), transcripts associated with the germ-line are stable. A sequence in the dead end 1 3'UTR mediates vegetal localization in the oocyte as well as miR mediated clearance in somatic cells and germ cell specific stabilization during the MZT in embryos. We could identify Tia1 to co-precipitate with known components of vegetal localization RNPs in X. laevis oocytes. Tia1 interacts and co-localizes with various localization elements from vegetally localizing RNAs. In X. laevis embryos, ectopic expression of Tia1 counteracts somatic degradation of dnd1 localization element reporter RNAs and it can synergize with Dnd1 protein in reporter RNA stabilization. Ectopic Tia1 also protects several endogenous localizing and germ cell specific mRNAs from somatic degradation. Thus, proteins that protect germ-line transcripts from miR mediated decay during the MZT in embryos might bind these RNAs already in the oocyte.
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