Callewaert Geert, D'hooge Petra, Ma Tien-Yang, Del Vecchio Mara, Van Eyck Vincent, Franssens Vanessa, Winderickx Joris
The Yeast Hub Lab, KU Leuven, Kortrijk, Belgium.
Functional Biology, Department of Biology, KU Leuven, Heverlee, Belgium.
Front Genet. 2020 May 8;11:266. doi: 10.3389/fgene.2020.00266. eCollection 2020.
The yeast is a powerful model to study the molecular mechanisms underlying α-synuclein (α-syn) cytotoxicity. This is due to the high degree of conservation of cellular processes with higher eukaryotes and the fact that yeast does not endogenously express α-synuclein. In this work, we focused specifically on the interplay between α-syn and intracellular Ca homeostasis. Using temperature-sensitive mutants and deletion strains for the vacuolar Ca transporters Pmc1 and Vcx1, together with aequorin-based Ca recordings, we show that overexpression of α-syn shifts the predominant temporal pattern of organellar Ca release from a biphasic to a quasi-monophasic response. Fragmentation and vesiculation of vacuolar membranes in α-syn expressing cells can account for the faster release of vacuolar Ca. α-Syn further significantly reduced Ca storage resulting in increased resting cytosolic Ca levels. Overexpression of the vacuolar Ca ATPase Pmc1 in wild-type cells prevented the α-syn-induced increase in resting Ca and was able to restore growth. We propose that α-syn-induced disruptions in Ca signaling might be an important step in initiating cell death.
酵母是研究α-突触核蛋白(α-syn)细胞毒性分子机制的有力模型。这是因为其细胞过程与高等真核生物高度保守,且酵母内源性不表达α-突触核蛋白。在这项工作中,我们特别关注α-syn与细胞内钙稳态之间的相互作用。利用液泡钙转运体Pmc1和Vcx1的温度敏感突变体和缺失菌株,结合基于水母发光蛋白的钙记录,我们发现α-syn的过表达将细胞器钙释放的主要时间模式从双相转变为准单相反应。表达α-syn的细胞中液泡膜的碎片化和囊泡化可解释液泡钙的更快释放。α-syn还显著降低了钙储存,导致静息胞质钙水平升高。在野生型细胞中过表达液泡钙ATP酶Pmc1可防止α-syn诱导的静息钙增加,并能够恢复生长。我们认为,α-syn诱导的钙信号破坏可能是启动细胞死亡的重要步骤。