Department of Biological Sciences, University of Denver , Denver CO 80208, United States.
Department of Cell and Developmental Biology, Anschutz Medical Campus, Aurora, CO 80045, United States.
FEMS Yeast Res. 2022 Mar 9;22(1). doi: 10.1093/femsyr/foac004.
Alzheimer's disease (AD) is responsible for 60%-80% of identified cases of dementia. While the generation and accumulation of amyloid precursor protein (APP) fragments is accepted as a key step in AD pathogenesis, the precise role of these fragments remains poorly understood. To overcome this deficit, we induced the expression of the soluble C-terminal fragment of APP (C99), the rate-limiting peptide for the generation of amyloid fragments, in yeast that contain thermosensitive mutations in genes encoding proteasome subunits. Our previous work with this system demonstrated that these proteasome-deficient yeast cells, expressing C99 when proteasome activity was blunted, generated amyloid fragments similar to those observed in AD patients. We now report the phenotypic repercussions of inducing C99 expression in proteasome-deficient cells. We show increased levels of protein aggregates, cellular stress and chaperone expression, electron-dense accumulations in the nuclear envelope/ER, abnormal DNA condensation, and an induction of apoptosis. Taken together, these findings suggest that the generation of C99 and its associated fragments in yeast cells with compromised proteasomal activity results in phenotypes that may be relevant to the neuropathological processes observed in AD patients. These data also suggest that this yeast model should be useful for testing therapeutics that target AD-associated amyloid, since it allows for the assessment of the reversal of the perturbed cellular physiology observed when degradation pathways are dysfunctional.
阿尔茨海默病(AD)占已确定的痴呆病例的 60%-80%。虽然淀粉样前体蛋白(APP)片段的产生和积累被认为是 AD 发病机制中的关键步骤,但这些片段的确切作用仍知之甚少。为了克服这一不足,我们在含有热敏感蛋白酶体亚基基因突变的酵母中诱导表达可溶性 C 端 APP 片段(C99),这是产生淀粉样片段的限速肽。我们之前使用该系统的工作表明,这些蛋白酶体缺陷型酵母细胞在蛋白酶体活性减弱时表达 C99,会产生类似于 AD 患者中观察到的淀粉样片段。我们现在报告在蛋白酶体缺陷型细胞中诱导 C99 表达的表型后果。我们发现蛋白质聚集体、细胞应激和伴侣蛋白表达水平增加,核膜/内质网中电子致密堆积,异常的 DNA 凝聚,以及细胞凋亡的诱导。总之,这些发现表明在蛋白酶体活性受损的酵母细胞中产生 C99 及其相关片段会导致表型,这些表型可能与 AD 患者观察到的神经病理学过程相关。这些数据还表明,该酵母模型应该对针对 AD 相关淀粉样的治疗方法的测试有用,因为它可以评估当降解途径功能失调时观察到的受损细胞生理学的逆转情况。