Friedrich Miescher Institute for Biomedical Research, Fabrikstrasse 24, 4056, Basel, Switzerland.
Bühlmann Laboratories AG, Baselstrasse 55, 4124, Schönenbuch, Switzerland.
Nat Commun. 2024 Nov 15;15(1):9910. doi: 10.1038/s41467-024-54141-0.
Loss of cytosolic actin filaments upon TORC2 inhibition triggers chromosome fragmentation in yeast, which results from altered base excision repair of Zeocin-induced lesions. To find the link between TORC2 kinase and this yeast chromosome shattering (YCS) we performed phosphoproteomics. YCS-relevant phospho-targets included plasma membrane-associated regulators of actin polymerization, such as Las17, the yeast Wiscott-Aldrich Syndrome protein. Induced degradation of Las17 was sufficient to trigger YCS in presence of Zeocin, bypassing TORC2 inhibition. In yeast, Las17 does not act directly at damage, but instead its loss, like TORC2 inhibition, raises nuclear actin levels. Nuclear actin, in complex with Arp4, forms an essential subunit of several nucleosome remodeler complexes, including INO80C, which facilitates DNA polymerase elongation. Here we show that the genetic ablation of INO80C activity leads to partial YCS resistance, suggesting that elevated levels of nuclear G-actin may stimulate INO80C to increase DNA polymerase processivity and convert single-strand lesions into double-strand breaks.
当 TORC2 受到抑制时,细胞溶质肌动蛋白丝的丢失会引发酵母中的染色体碎片化,这是由于 Zeocin 诱导的损伤的碱基切除修复发生改变所致。为了找到 TORC2 激酶与这种酵母染色体破碎(YCS)之间的联系,我们进行了磷酸化蛋白质组学研究。与 YCS 相关的磷酸化靶标包括与肌动蛋白聚合相关的质膜相关调节剂,如 Las17,即酵母威斯科特-奥尔德里奇综合征蛋白。在 Zeocin 存在的情况下,诱导 Las17 降解足以触发 YCS,从而绕过 TORC2 抑制。在酵母中,Las17 并非直接作用于损伤部位,而是其缺失,就像 TORC2 抑制一样,会提高核肌动蛋白水平。核肌动蛋白与 Arp4 形成几个核小体重塑复合物的必需亚基,包括 INO80C,它促进 DNA 聚合酶延伸。在这里,我们表明 INO80C 活性的遗传缺失会导致部分 YCS 抗性,这表明核 G-肌动蛋白水平的升高可能会刺激 INO80C 增加 DNA 聚合酶的延伸能力,并将单链损伤转化为双链断裂。