Department of Pharmacology, University of Nevada, Reno, NV 89557, USA.
Int J Mol Sci. 2024 Jun 6;25(11):6258. doi: 10.3390/ijms25116258.
TDP-43 forms aggregates in the neurons of patients with several neurodegenerative diseases. Human TDP-43 also aggregates and is toxic in yeast. Here, we used a yeast model to investigate (1) the nature of TDP-43 aggregates and (2) the mechanism of TDP-43 toxicity. Thioflavin T, which stains amyloid but not wild-type TDP-43 aggregates, also did not stain mutant TDP-43 aggregates made from TDP-43 with intragenic mutations that increase or decrease its toxicity. However, 1,6-hexanediol, which dissolves liquid droplets, dissolved wild-type or mutant TDP-43 aggregates. To investigate the mechanism of TDP-43 toxicity, the effects of TDP-43 mutations on the autophagy of the GFP-ATG8 reporter were examined. Mutations in TDP-43 that enhance its toxicity, but not mutations that reduce its toxicity, caused a larger reduction in autophagy. TOROID formation, which enhances autophagy, was scored as GFP-TOR1 aggregation. TDP-43 inhibited TOROID formation. TORC1 bound to both toxic and non-toxic TDP-43, and to TDP-43, with reduced toxicity due to . However, extragenic modifiers and TDP-43 mutants that reduced TDP-43 toxicity, but not TDP-43 mutants that enhanced toxicity, restored TOROID formation. This is consistent with the hypothesis that TDP-43 is toxic in yeast because it reduces TOROID formation, causing the inhibition of autophagy. Whether TDP-43 exerts a similar effect in higher cells remains to be determined.
TDP-43 在患有几种神经退行性疾病的患者的神经元中形成聚集体。人类 TDP-43 也在酵母中聚集并具有毒性。在这里,我们使用酵母模型研究了 (1) TDP-43 聚集体的性质和 (2) TDP-43 毒性的机制。硫黄素 T 可染色淀粉样蛋白,但不能染色野生型 TDP-43 聚集体,也不能染色由增加或降低其毒性的 TDP-43 基因内突变制成的突变型 TDP-43 聚集体。然而,1,6-己二醇,可溶解液滴,溶解野生型或突变型 TDP-43 聚集体。为了研究 TDP-43 毒性的机制,研究了 TDP-43 突变对 GFP-ATG8 报告基因自噬的影响。增强其毒性的 TDP-43 突变,但不是降低其毒性的突变,导致自噬减少更大。增强自噬的 TOROID 形成被评为 GFP-TOR1 聚集。TDP-43 抑制 TOROID 形成。TORC1 与毒性和非毒性 TDP-43 结合,并与由于. 而毒性降低的 TDP-43 结合,但是,外显子修饰因子和降低 TDP-43 毒性的 TDP-43 突变体,但不是增强 TDP-43 毒性的 TDP-43 突变体,恢复了 TOROID 形成。这与 TDP-43 在酵母中有毒的假设一致,因为它降低了 TOROID 形成,从而抑制了自噬。TDP-43 是否在高等细胞中产生类似的作用仍有待确定。