A Size Threshold Limits Prion Transmission and Establishes Phenotypic Diversity

作者:Derdowski Aaron; Sindi Suzanne S*; Klaips Courtney L; DiSalvo Susanne; Serio Tricia R
来源:Science, 2010, 330(6004): 680-683.
DOI:10.1126/science.1197785

摘要

According to the prion hypothesis, atypical phenotypes arise when a prion protein adopts an alternative conformation and persist when that form assembles into self-replicating aggregates. Amyloid formation in vitro provides a model for this protein-misfolding pathway, but the mechanism by which this process interacts with the cellular environment to produce transmissible phenotypes is poorly understood. Using the yeast prion Sup35/[PSI+], we found that protein conformation determined the size distribution of aggregates through its interactions with a molecular chaperone. Shifts in this range created variations in aggregate abundance among cells because of a size threshold for transmission, and this heterogeneity, along with aggregate growth and fragmentation, induced age-dependent fluctuations in phenotype. Thus, prion conformations may specify phenotypes as population averages in a dynamic system.

  • 出版日期2010-10-29