首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Zebrafish vasa RNA but Not Its Protein Is a Component of the Germ Plasm and Segregates Asymmetrically before Germline Specification
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Zebrafish vasa RNA but Not Its Protein Is a Component of the Germ Plasm and Segregates Asymmetrically before Germline Specification

机译:斑马鱼瓦萨RNA,但不是其蛋白质是胚芽血浆的组成部分,在种系规格之前不对称地分离

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摘要

Work in different organisms revealed that the vasa gene product is essential for germline specification. Here, we describe the asymmetric segregation of zebrafish vasa RNA, which distinguishes germ cell precursors from somatic cells in cleavage stage embryos. At the late blastula (sphere) stage, vasa mRNA segregation changes from asymmetric to symmetric, a process that precedes primordial germ cell proliferation and perinuclear localization of Vasa protein. Analysis of hybrid fish between Danio rerio and Danio feegradei demonstrates that zygotic vasa transcription is initiated shortly after the loss of unequal vasa mRNA segregation. Blocking DNA replication indicates that the change in vasa RNA segregation is dependent on a maternal program. Asymmetric segregation is impaired in embryos mutant for the maternal effect gene nebel. Furthermore, ultrastructural analysis of vasa RNA particles reveals that vasa RNA, but not Vasa protein, localizes to a subcellular structure that resembles nuage, a germ plasm organelle. The structure is initially associated with the actin cortex, and subsequent aggregation is inhibited by actin depolymerization. Later, the structure is found in close proximity of microtubules. We previously showed that its translocation to the distal furrows is microtubule dependent. We propose that vasa RNA but not Vasa protein is a component of the zebrafish germ plasm. Triggered by maternal signals, the pattern of germ plasm segregation changes, which results in the expression of primordial germ cell–specific genes such as vasa and, consequently, in germline fate commitment.
机译:在不同生物中的工作表明,vasa基因产物对于种系规格至关重要。在这里,我们描述了斑马鱼瓦萨RNA的不对称分离,它区分卵裂期胚胎中的生殖细胞前体与体细胞。在囊胚晚期(球囊),vasa mRNA的分离从不对称变为对称,这是原始生殖细胞增殖和Vasa蛋白在核周定位之前的过程。对斑马鱼和斑马鱼之间杂种鱼的分析表明,合子的瓦萨转录在不等的瓦萨mRNA分离消失后不久开始。阻断DNA复制表明vasa RNA分离的变化取决于母体程序。对于母体效应基因nebel的胚胎突变体,不对称分离受到损害。此外,对瓦萨RNA颗粒的超微结构分析表明,瓦萨RNA而非瓦萨蛋白定位于亚细胞结构,该亚细胞结构类似于成核细胞质细胞器。该结构最初与肌动蛋白皮质相关联,随后的聚集因肌动蛋白解聚而受到抑制。后来,在微管附近发现了该结构。我们以前表明,其向远端犁沟的移位是微管依赖性的。我们建议瓦萨RNA,而不是瓦萨蛋白是斑马鱼种质的组成部分。母体信号触发后,种质分离的模式发生变化,从而导致原始生殖细胞特异基因(例如瓦萨)的表达,并因此导致种系命运的确定。

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