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DEADSouth protein localizes to germ plasm and is required for the development of primordial germ cells in Xenopus laevis

机译:DEADSouth蛋白位于种质中,是非洲爪蟾原始生殖细胞发育所必需的

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DEADSouth mRNA is a component of germ plasm in Xenopus laevis and encodes a DDX25 DEAD-box RNA helicase. To determine the intracellular localization of DEADSouth protein, we injected mRNA encoding DEADSouth tagged with mCherry fluorescent protein into fertilized eggs from transgenic Xenopus expressing EGFP fused with a mitochondrial targeting signal. The DEADSouth-mCherry fusion protein was localized to the germ plasm, a mitochondria-rich region in primordial germ cells (PGCs). DEADSouth overexpression resulted in a reduction of PGC numbers after stage 20. Conversely, DEADSouth knockdown using an antisense locked nucleic acid gapmer inhibited movement of the germ plasm from the cortex to the perinuclear region, resulting in inhibition of PGC division at stage 12 and a decrease in PGC numbers at later stages. The knockdown phenotype was rescued by intact DEADSouth mRNA, but not mutant mRNA encoding inactive DEADSouth helicase. Surprisingly, it was also rescued by mouse vasa homolog and Xenopus vasa -like gene 1 mRNAs that encode DDX4 RNA helicases. The rescue was dependent on the 3′ untranslated region (3′UTR) of DEADSouth mRNA, which was used for PGC-specific expression. The 3′UTR contributed to localization of the injected mRNA to the germ plasm, resulting in effective localization of DEADSouth protein. These results demonstrate that localization of DEADSouth helicase to the germ plasm is required for proper PGC development in Xenopus laevis .
机译:DEADSouth mRNA是非洲爪蟾种质的一个组成部分,编码DDX25 DEAD-box RNA解旋酶。为了确定DEADSouth蛋白在细胞内的定位,我们将注射了带有mCherry荧光蛋白标记的DEADSouth的mRNA注入了表达EGFP的转基因非洲爪蟾与线粒体靶向信号融合的受精卵中。 DEADSouth-mCherry融合蛋白位于原始生殖细胞(PGC)中的线粒体富集区域,即种质。 DEADSouth的过表达导致第20阶段后PGC数量减少。相反,使用反义锁定核酸空聚物的DEADSouth敲低可抑制种质从皮质向核周区域的移动,从而导致第12阶段PGC分裂受到抑制并减少在以后的阶段中使用PGC编号。完整的DEADSouth mRNA可挽救击倒表型,但不能编码失活的DEADSouth解旋酶的突变mRNA可以挽救这种基因型。出人意料的是,它还被编码DXD4 RNA解旋酶的小鼠vasa同源物和非洲爪蟾vasa样基因1 mRNA拯救。救援依赖于DEADSouth mRNA的3'非翻译区(3'UTR),该区用于PGC特异性表达。 3'UTR有助于将注入的mRNA定位到种质,导致DEADSouth蛋白的有效定位。这些结果表明,DEADSouth解旋酶定位到种质是爪蟾正常PGC发育所需要的。

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