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The formation of vault-tubes: a dynamic interaction between vaults and vault PARP.

机译:保管库的形成:保管库和保管库PARP之间的动态交互。

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Vaults are barrel-shaped cytoplasmic ribonucleoprotein particles that are composed of a major vault protein (MVP), two minor vault proteins [telomerase-associated protein 1 (TEP1), vault poly(ADP-ribose) polymerase (VPARP)] and small untranslated RNA molecules. Not all expressed TEP1 and VPARP in cells is bound to vaults. TEP1 is known to associate with the telomerase complex, whereas VPARP is also present in the nuclear matrix and in cytoplasmic clusters (VPARP-rods). We examined the subcellular localization and the dynamics of the vault complex in a non-small cell lung cancer cell line expressing MVP tagged with green fluorescent protein. Using quantitative fluorescence recovery after photobleaching (FRAP) it was shown that vaults move temperature independently by diffusion. However, incubation at room temperature (21 degrees C) resulted in the formation of distinct tube-like structures in the cytoplasm. Raising the temperature could reverse this process. When the vault-tubes were formed, there were fewer or no VPARP-rods present in the cytoplasm, suggesting an incorporation of the VPARP into the vault-tubes. MVP molecules have to interact with each other via their coiled-coil domain in order to form vault-tubes. Furthermore, the stability of microtubules influenced the efficiency of vault-tube formation at 21 degrees C. The dynamics and structure of the tubes were examined using confocal microscopy. Our data indicate a direct and dynamic relationship between vaults and VPARP, providing further clues to unravel the function of vaults.
机译:保管库是桶形的胞质核糖核蛋白颗粒,由主要保管库蛋白(MVP),两个较小的保管库蛋白[端粒酶相关蛋白1(TEP1),保管库聚(ADP-核糖)聚合酶(VPARP)]和小的未翻译RNA组成分子。并非所有在细胞中表达的TEP1和VPARP都与保管库绑定。已知TEP1与端粒酶复合物缔合,而VPARP也存在于核基质和细胞质簇(VPARP棒)中。我们检查了亚细胞定位和金库复合物在非小细胞肺癌细胞系中表达绿色荧光蛋白标记的MVP的动力学。使用光漂白后的定量荧光恢复(FRAP),可以显示金库通过扩散独立地移动温度。但是,在室温(21摄氏度)下孵育会导致细胞质中形成明显的管状结构。升高温度可能会逆转此过程。当形成穹顶管时,在细胞质中几乎没有或没有VPARP棒,这表明VPARP掺入了穹顶管。 MVP分子必须通过其螺旋线圈结构域相互相互作用,以形成穹顶管。此外,微管的稳定性影响在21摄氏度下拱形管的形成效率。使用共聚焦显微镜检查了管的动力学和结构。我们的数据表明Vault与VPARP之间存在直接和动态的关系,从而提供了进一步的线索来揭示Vault的功能。

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