Westergard Laura, True Heather L
Department of Cell Biology and Physiology, Washington University, St Louis, MO, 63110, USA.
Mol Microbiol. 2014 Apr;92(1):183-93. doi: 10.1111/mmi.12543. Epub 2014 Mar 7.
Variation in amyloid structures profoundly influences a wide array of pathological phenotypes in mammalian protein conformation disorders and dominantly inherited phenotypes in yeast. Here, we describe, for the first time, naturally occurring, self-propagating, structural variants of a prion protein isolated from wild strains of the yeast Saccharomyces cerevisiae. Variants of the [RNQ⁺] prion propagating in a variety of wild yeast differ biochemically, in their intracellular distributions, and in their ability to promote formation of the [PSI⁺] prion. [PSI⁺] is an epigenetic regulator of cellular phenotype and adaptability. Strikingly, we find that most natural [RNQ⁺] variants induced [PSI⁺] at high frequencies and the majority of [PSI⁺] variants elicited strong cellular phenotypes. We hypothesize that the presence of an efficient [RNQ⁺] template primes the cell for [PSI⁺] formation in order to induce [PSI⁺] in conditions where it would be advantageous. These studies utilize naturally occurring structural variants to expand our understanding of the consequences of diverse prion conformations on cellular phenotypes.
淀粉样蛋白结构的变异深刻影响着哺乳动物蛋白质构象疾病中的一系列病理表型以及酵母中的显性遗传表型。在此,我们首次描述了从酿酒酵母野生菌株中分离出的朊病毒蛋白的天然存在、自我传播的结构变体。在多种野生酵母中传播的[RNQ⁺]朊病毒变体在生化性质、细胞内分布以及促进[PSI⁺]朊病毒形成的能力方面存在差异。[PSI⁺]是细胞表型和适应性的一种表观遗传调节因子。令人惊讶的是,我们发现大多数天然[RNQ⁺]变体高频诱导[PSI⁺],并且大多数[PSI⁺]变体引发强烈的细胞表型。我们推测高效[RNQ⁺]模板的存在使细胞为[PSI⁺]形成做好准备,以便在有利条件下诱导[PSI⁺]。这些研究利用天然存在的结构变体来扩展我们对不同朊病毒构象对细胞表型影响的理解。