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The Misshapen kinase regulates the size and stability of the germline ring canals in the Drosophila egg chamber

机译:Misshapen激酶调节果蝇卵腔中种系环管的大小和稳定性

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摘要

Intercellular bridges are conserved structures that allow neighboring cells to exchange cytoplasmic material; defects in intercellular bridges can lead to infertility in many organisms. Here, we use the Drosophila egg chamber to study the mechanisms that regulate intercellular bridges. Within the developing egg chamber, the germ cells (15 nurse cells and 1 oocyte) are connected to each other through intercellular bridges called ring canals, which expand over the course of oogenesis to support the transfer of materials from the nurse cells to the oocyte. The ring canals are enriched in actin and actin binding proteins, and many proteins have been identified that localize to the germline ring canals and control their expansion and stability. Here, we demonstrate a novel role for the Ste20 family kinase, Misshapen (Msn), in regulation of the size of the germline ring canals. Msn localizes to ring canals throughout most of oogenesis, and depletion of Msn led to the formation of larger ring canals. Over-expression of Msn decreased ring canal diameter, and expression of a membrane tethered form of Msn caused ring canal detachment and nurse cell fusion. Altering the levels or localization of Msn also led to changes in the actin cytoskeleton and altered the localization of E-cadherin, which suggests that Msn could be indirectly limiting ring canal size by altering the structure or dynamics of the actin cytoskeleton and/or adherens junctions.
机译:细胞间桥是保守的结构,允许邻近细胞交换细胞质物质。细胞间桥的缺陷可导致许多生物的不育。在这里,我们使用果蝇卵室研究调节细胞间桥的机制。在发育中的卵腔内,生殖细胞(15个护士细胞和1个卵母细胞)通过称为环管的细胞间桥相互连接,该桥在成卵过程中扩展以支持物质从护士细胞向卵母细胞的转移。环状管中富含肌动蛋白和肌动蛋白结合蛋白,并且已经鉴定出许多位于种系环状管中并控制其扩增和稳定性的蛋白。在这里,我们证明了Ste20家族激酶Misshapen(Msn)在调节种系环管大小方面的新作用。 Msn在大多数卵子发生过程中都定位于环管,而Msn的耗尽导致形成较大的环管。 Msn的过度表达会降低环管直径,而Msn的膜系留形式的表达会引起环管脱离和护士细胞融合。改变Msn的水平或定位也会导致肌动蛋白细胞骨架的变化并改变E-钙粘蛋白的定位,这表明Msn可能通过改变肌动蛋白细胞骨架和/或粘附连接的结构或动力学而间接限制了环管的大小。

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