Department of Molecular Microbiology and Biotechnology, George S. Wise Faculty of Life Sciences, Tel Aviv University, 69978, Tel Aviv, Israel.
BLAVATNIK CENTER for Drug Discovery, Tel Aviv University, 6997801, Tel Aviv, Israel.
Nat Commun. 2019 Jan 8;10(1):62. doi: 10.1038/s41467-018-07966-5.
The extension of the amyloid hypothesis to include non-protein metabolite assemblies invokes a paradigm for the pathology of inborn error of metabolism disorders. However, a direct demonstration of the assembly of metabolite amyloid-like structures has so far been provided only in vitro. Here, we established an in vivo model of adenine self-assembly in yeast, in which toxicity is associated with intracellular accumulation of the metabolite. Using a strain blocked in the enzymatic pathway downstream to adenine, we observed a non-linear dose-dependent growth inhibition. Both the staining with an indicative amyloid dye and anti-adenine assemblies antibodies demonstrated the accumulation of adenine amyloid-like structures, which were eliminated by lowering the supplied adenine levels. Treatment with a polyphenol inhibitor reduced the occurrence of amyloid-like structures while not affecting the dramatic increase in intracellular adenine concentration, resulting in inhibition of cytotoxicity, further supporting the notion that toxicity is triggered by adenine assemblies.
该淀粉样蛋白假说的扩展,包括非蛋白质代谢物的组装,援引了先天代谢错误障碍病理学的范例。然而,迄今为止,仅在体外直接证明了代谢物类似淀粉样结构的组装。在这里,我们在酵母中建立了腺嘌呤自组装的体内模型,其中毒性与代谢物的细胞内积累有关。使用在腺嘌呤下游的酶途径中被阻断的菌株,我们观察到非线性剂量依赖性生长抑制。用指示性淀粉样蛋白染料和抗腺嘌呤组装抗体染色都证明了腺嘌呤类似淀粉样结构的积累,通过降低供应的腺嘌呤水平可以消除这些结构。多酚抑制剂的处理减少了淀粉样结构的发生,而不影响细胞内腺嘌呤浓度的显著增加,从而抑制了细胞毒性,进一步支持了毒性是由腺嘌呤组装触发的观点。