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DNA damage signaling triggers the cytoplasm-to-vacuole pathway of autophagy to regulate cell cycle progression

机译:DNA损伤信号触发自噬的细胞质-真空通路调节细胞周期进程

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摘要

Budding yeast cells suffering a single unrepaired DNA double-strand break (DSB) trigger the ATR (Mec1)-dependent DNA damage checkpoint and arrest prior to anaphase for 12–15 h, following which they adapt and resume cell division. When the DNA lesion can be repaired, the checkpoint is extinguished and cells “recover” and resume mitosis. In this autophagic punctum, we report that hyperactivation of autophagy—specifically via the cytoplasm-to-vacuole targeting (Cvt) pathway—prevents both adaptation to, and recovery from, DNA damage, resulting in the permanent arrest of cells in G2/M. We show that Saccharomyces cerevisiae deleted for genes encoding the Golgi-associated retrograde protein transport (GARP) complex are both adaptation- and recovery-defective. GARP mutants such as vps51Δ exhibit mislocalization of the key mitotic regulator, securin (Pds1), and its degradation by the vacuolar protease Prb1. In addition, separase (Esp1), is excluded from the nucleus, accounting for pre-anaphase arrest. Pds1 is degraded via the Cvt pathway. Many of the same defects seen by deleting GARP genes can be mimicked by hyperactivation of the Cvt pathway by overexpressing an unphosphorylatable form of ATG13 or by adding the TORC1 inhibitor rapamycin. These results suggest that nuclear events such as DNA damage can have profound effects on cytoplasmic processes and further expand the burgeoning connections between DNA damage and autophagy.
机译:遭受单个未修复的DNA双链断裂(DSB)的出芽酵母细胞会触发ATR(Mec1)依赖的DNA损伤检查点,并在后期12-15 h之前停滞,随后它们适应并恢复细胞分裂。当DNA损伤可以修复时,检查点消失,细胞“恢复”并恢复有丝分裂。在这种自噬性泪点中,我们报道了自噬的过度激活(特别是通过细胞质-真空定向(Cvt)途径)防止了对DNA损伤的适应和恢复,从而导致了G2 / M细胞的永久停滞。我们显示酿酒酵母删除的编码高尔基体相关逆行蛋白运输(GARP)复杂的基因都是适应性和恢复性缺陷。 GARP突变体(例如vps51Δ)表现出关键的有丝分裂调节剂securin(Pds1)的定位错误,并被液泡蛋白酶Prb1降解。另外,separase(Esp1),被排除在细胞核之外,这说明后期停滞。 Pds1通过Cvt途径降解。通过过度表达不可磷酸化形式的ATG13或添加TORC1抑制剂雷帕霉素,可以通过过度激活Cvt途径来模拟许多缺失GARP基因的相同缺陷。这些结果表明,诸如DNA损伤之类的核事件可以对细胞质过程产生深远影响,并进一步扩大DNA损伤与自噬之间的迅速联系。

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