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首页> 外文期刊>Developmental biology >The Xdsg protein in presumptive primordial germ cells (pPGCs) is essential to their differentiation into PGCs in Xenopus
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The Xdsg protein in presumptive primordial germ cells (pPGCs) is essential to their differentiation into PGCs in Xenopus

机译:推测性原始生殖细胞(pPGC)中的Xdsg蛋白对于它们在非洲爪蟾中向PGC的分化至关重要

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In order to know the role of the Xdsg gene in presumptive PGCs (pPGCs) of Xenopus, we attempted to inhibit the translation of Xdsg mRNA in pPGCs by injecting antisense morpholino oligo (asMO), together with Fluorescein Dextran-Lysine (FDL), into single germ plasm-bearing cells of 32-cell embryos. Among three types of asMOs complementary to different parts of the 5'-untranslated region of Xdsg mRNA tested, only one asMO, designated as Xdsg-3, inhibited the translation of the mRNA in FDL-labeled pPGCs, resulting in the absence of labeled PGCs in experimental tadpoles. On the other hand, two other asMOs, Xdsg-1 and -2, did not inhibit the translation, so that a similar number of labeled PGCs found in FDL-injected but asMO-uninjected control tadpoles were observed in experimental tadpoles derived from asMO-injected embryos. Surprisingly, use of Xdsg-3 asMO resulted in the disappearance of the protein of Xenopus vasa homolog (Xenopus vasa-like gene 1, XVLG1) from FDL-labeled pPGCs by inhibiting the translation of XVLG1 mRNA. However, the effect of Xdsg-3 asMO on the translation of Xdsg and XVLG1 mRNAs and PGC formation could be canceled by the coinjection with Xdsg mRNA. Consequently, the Xdsg protein in pPGCs may play an important role in the formation of PGCs by regulating the production of XVLG1 protein. (c) 2006 Elsevier Inc. All rights reserved.
机译:为了了解Xdsg基因在非洲爪蟾的推定PGC(pPGCs)中的作用,我们试图通过将反义吗啉代寡核苷酸(asMO)与荧光素葡聚糖-赖氨酸(FDL)一起注射到pPGC中来抑制Xdsg mRNA的翻译。具有32个细胞的胚胎的单个带有种质的细胞。与测试的Xdsg mRNA 5'-非翻译区的不同部分互补的三种类型的asMO中,只有一种asMO(称为Xdsg-3)抑制FDL标记的pPGCs中mRNA的翻译,导致不存在标记的PGC在实验t中。另一方面,另外两个asMO,Xdsg-1和-2则不抑制翻译,因此在衍生自asMO-的实验性s中,在FDL注入但asMO未注入的对照t中发现了相似数量的标记PGC。注射胚胎。出乎意料的是,使用Xdsg-3 asMO通过抑制XVLG1 mRNA的翻译,导致FDL标记的pPGC中Xenopus vasa同源蛋白(Xenopus vasa样基因1,XVLG1)的消失。然而,通过与Xdsg mRNA共注射可以消除Xdsg-3 asMO对Xdsg和XVLG1 mRNA的翻译以及PGC形成的影响。因此,pPGC中的Xdsg蛋白可能通过调节XVLG1蛋白的产生在PGC的形成中起重要作用。 (c)2006 Elsevier Inc.保留所有权利。

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