Department of Medical Genome Sciences, Graduate School of Frontier Sciences, The University of Tokyo, Kashiwa, Chiba 277-8562, Japan.
J Cell Biol. 2010 Jul 26;190(2):223-31. doi: 10.1083/jcb.201002149. Epub 2010 Jul 19.
Yeast prion [PSI(+)] is caused by aggregated structures of the Sup35 protein. Although Sup35 forms typical amyloid fibrils in vitro, there is no direct evidence for the fibrillar structures of Sup35 in vivo. We analyzed [PSI(+)] cells in which Sup35 fused with green fluorescent protein (GFP) formed aggregates visible by fluorescence microscopy using thin-section electron microscopy (EM). Rapid-freeze EM combined with an immunogold-labeling technique as well as correlative light EM, which allows high-resolution imaging by EM of the same structure observed by light (fluorescence) microscopy, shows that the aggregates contain bundled fibrillar structures of Sup35-GFP. Additional biochemical and fluorescent correlation spectroscopy results suggest that the Sup35 oligomers diffused in the [PSI(+)] lysates adopt fibril-like shapes. Our findings demonstrate that [PSI(+)] cells contain Sup35 fibrillar structures closely related to those formed in vitro and provide insight into the molecular mechanism by which Sup35 aggregates are assembled and remodeled in [PSI(+)] cells.
酵母朊病毒[PSI(+)]是由 Sup35 蛋白的聚集结构引起的。尽管 Sup35 在体外形成典型的淀粉样纤维,但体内 Sup35 的纤维结构尚无直接证据。我们分析了 Sup35 与绿色荧光蛋白(GFP)融合形成聚集体的[PSI(+)]细胞,这些聚集体可以通过荧光显微镜观察到,然后使用薄切片电子显微镜(EM)进行分析。快速冷冻 EM 结合免疫金标记技术以及相关的光 EM,允许通过 EM 对同一结构进行高分辨率成像,该结构通过光(荧光)显微镜观察。结果表明,这些聚集体包含 Sup35-GFP 的束状纤维结构。其他生化和荧光相关光谱学结果表明,在[PSI(+)]裂解物中扩散的 Sup35 寡聚物采用类似纤维的形状。我们的发现表明,[PSI(+)]细胞中含有与体外形成的纤维结构密切相关的 Sup35 纤维结构,并深入了解了 Sup35 聚集体在[PSI(+)]细胞中组装和重塑的分子机制。