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Cell cycle-dependent nuclear localization of yeast RNase III is required for efficient cell division

机译:酵母RNase III的细胞周期依赖性核定位是有效细胞分裂所必需的

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Members of the double-stranded RNA-specific ribonuclease III (RNase III) family were shown to affect cell division and chromosome segregation, presumably through an RNA interference-dependent mechanism. Here, we show that in Saccharomyces cerevisiae, where the RNA interference machinery is not conserved, an orthologue of RNase III (Rnt1p) is required for progression of the cell cycle and nuclear division. The deletion of Rnt1p delayed cells in both G1 and G2/M phases of the cell cycle. Nuclear division and positioning at the bud neck were also impaired in Deltarnt1 cells. The cell cycle defects were restored by the expression of catalytically inactive Rnt1p, indicating that RNA cleavage is not essential for cell cycle progression. Rnt1p was found to exit from the nucleolus to the nucleoplasm in the G2/M phase, and perturbation of its localization pattern delayed the progression of cell division. A single mutation in the Rnt1p N-terminal domain prevented its accumulation in the nucleoplasm and slowed exit from mitosis without any detectable effects on RNA processing. Together, the data reveal a new role for a class II RNase III in the cell cycle and suggest that at least some members of the RNase III family possess catalysis-independent functions.
机译:已显示双链RNA特异性核糖核酸酶III(RNase III)家族的成员可能通过RNA干扰依赖性机制影响细胞分裂和染色体分离。在这里,我们显示了在酿酒酵母中,RNA干扰机制不保守,RNA酶III(Rnt1p)的直向同源物是细胞周期和核分裂进程所必需的。 Rnt1p的删除延迟了细胞周期的G1和G2 / M期的细胞。 Deltarnt1细胞中的核分裂和在芽颈处的定位也受到损害。细胞周期缺陷通过催化失活的Rnt1p的表达得以恢复,表明RNA裂解对于细胞周期进程不是必需的。发现Rnt1p在G2 / M期从核仁退出到核质,并且其定位模式的扰动延迟了细胞分裂的进程。 Rnt1p N末端结构域中的单个突变阻止了其在核质中的积累并减慢了有丝分裂的退出,而对RNA加工没有任何可检测的影响。总之,这些数据揭示了II类RNase III在细胞周期中的新作用,并暗示RNase III家族的至少某些成员具有不依赖催化的功能。

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