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Polo-mediated phosphorylation of maelstrom regulates oocyte determination during oogenesis in drosophila

机译:马球介导的大漩涡的磷酸化调节果蝇卵子发生过程中的卵母细胞测定。

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In Drosophila, Maelstrom is a conserved component of the perinuclear nuage, a germline-unique structure that appears to serve as a site for Piwi-interacting RNA (piRNA) production to repress deleterious transposons. Maelstrom also functions in the nucleus as a transcriptional regulator to repress the expression of microRNA-7, a process that is essential for the proper differentiation of germline stem cells. In this paper, we report another function of Maelstrom in regulating oocyte determination independently of its transposon silencing and germline stem cell differentiation activities. In Drosophila, the conserved serine 138 residue in Maelstrom is required for its phosphorylation, an event that promotes oocyte determination. Phosphorylation of Maelstrom is required for the repression of the pachytene checkpoint protein Sir2, but not for transposon silencing or for germline stem cell differentiation. We identify Polo as a kinase that mediates the phosphorylation of Maelstrom. Our results suggest that the Polo-mediated phosphorylation of Maelstrom may be a mechanism that controls oocyte determination by inactivating the pachytene checkpoint via the repression of Sir2 in Drosophila ovaries.
机译:在果蝇中,大漩涡是核周基因的保守组成部分,一种独特的种系结构,似乎可以作为Piwi相互作用RNA(piRNA)产生的位点来抑制有害的转座子。 Maelstrom在细胞核中也起转录调节子的作用,以抑制microRNA-7的表达,这是种系干细胞正确分化必不可少的过程。在本文中,我们报道了Maelstrom在调节卵母细胞测定中的另一功能,独立于其转座子沉默和种系干细胞分化活性。在果蝇中,Maelstrom的保守丝氨酸138残基需要磷酸化,这是促进卵母细胞确定的事件。 Maelstrom的磷酸化是抑制粗线检查点蛋白Sir2所必需的,但转座子沉默或种系干细胞分化则不需要。我们确定Polo为介导大漩涡的磷酸化的激酶。我们的研究结果表明,马洛斯特罗岛的Polo介导的磷酸化可能是通过抑制果蝇卵巢中Sir2的活化来活化粗线检查点来控制卵母细胞测定的一种机制。

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