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Loss of cysteinyl-tRNA synthetase ( CARS) induces the transsulfuration pathway and inhibits ferroptosis induced by cystine deprivation

机译:半胱氨酰-tRNA合成酶(CARS)的丢失诱导了转硫途径并抑制了胱氨酸剥夺引起的肥大症

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Ferroptosis is a form of regulated non-apoptotic cell death that has been implicated in several disease contexts. A better understanding of the ferroptotic death mechanism could lead to the development of new therapeutics for degenerative diseases, and a better understanding of how to induce ferroptosis in specific tumor contexts. We performed an unbiased genome-wide siRNA screen to find genetic suppressors of ferroptosis. We determined that loss of CARS, the cysteinyl-tRNA synthetase, suppresses ferroptosis induced by erastin, which inhibits the cystine-glutamate antiporter known as system x(c) . Knockdown of CARS inhibited erastin-induced death by preventing the induction of lipid reactive oxygen species, without altering iron homeostasis. Knockdown of CARS led to the accumulation of cystathionine, a metabolite on the transsulfuration pathway, and upregulated genes associated with serine biosynthesis and transsulfuration. In addition, inhibition of the transsulfuration pathway resensitized cells to erastin, even after CARS knockdown. These studies demonstrate a new mechanism of resistance to ferroptosis and may lead to strategies for inducing and suppressing ferroptosis in diverse contexts.
机译:Ferroptosis是一种调节性非凋亡性细胞死亡的形式,已涉及多种疾病。更好地了解肥大性死亡机制可能会导致退行性疾病的新疗法的发展,并更好地了解如何在特定的肿瘤情况下诱发肥大症。我们进行了无偏见的全基因组siRNA筛选,以发现铁锈病的遗传抑制剂。我们确定,CARS(半胱氨酸-tRNA合成酶)的丢失抑制了由蛋白蛋白引起的肥大病,从而抑制了胱氨酸-谷氨酸逆转运蛋白,称为系统x(c)。通过抑制脂质反应性氧的诱导,抑制CARS抑制了蛋白的死亡,而不会改变铁的稳态。降低CARS导致了胱硫醚的积累,胱硫醚是转硫途径上的代谢产物,并且与丝氨酸生物合成和转硫相关的基因上调。此外,即使在CARS敲低后,转硫途径的抑制作用也会使细胞对Estin敏感。这些研究证明了抗铁锈病的新机制,并可能导致在各种情况下诱导和抑制铁锈病的策略。

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