<p>It was reported that yeast proteins Ssz1 and Upf1 can cure certain [<i>PSI</i><sup><i>+</i></sup>] variants in wild-type cells and there is a special class of variants whose propagation requires the triple mutation of <i>ssz1</i>∆ <i>upf1</i>∆ Hsp104<sup>T160M</sup>. Attempts to isolate variants with the exact properties from the 74-D694 strain (and tested there) are not yet successful. The effort nevertheless leads to an alternative analysis about how <i>ssz1</i>∆ and <i>upf1</i>∆ mutations can help prion propagation. The cellular propagation of the yeast prion [<i>PSI</i><sup><i>+</i></sup>] requires appropriate activities of the Hsp104 disaggregase. Many [<i>PSI</i><sup><i>+</i></sup>] variants isolated in wild-type strains cannot propagate in cells expressing Hsp104<sup>T160M</sup>, which has weaker activities. Yet another group of [<i>PSI</i><sup><i>+</i></sup>] variants shows the opposite, propagating well with Hsp104<sup>T160M</sup> but is eliminated by the wild-type protein. Deletion of <i>SSZ1</i> and <i>UPF1</i> genes in Hsp104<sup>T160M</sup> cells generates a just-right environment that supports the propagation of both types of [<i>PSI</i><sup><i>+</i></sup>] variants. The pro-prion effect is not due to the removal of active curing by Ssz1 or Upf1–such curing activity is not observed for the variants. Rather, the double deletion causes a cellular response, which enables more efficient fragmentation of prion fibers, thus remedying the weak activity of Hsp104<sup>T160M</sup>. The “Goldilocks” conditioning seems also applicable to other yeast prions. Two [<i>PIN</i><sup><i>+</i></sup>] variants that propagate well with wild-type Hsp104 but poorly with Hsp104<sup>∆N</sup>, lacking residues (2-147), can however thrive with the latter if Ssz1 and Upf1 are also deleted from the cell. In this case, the double deletion results in higher Hsp104<sup>∆N</sup> expression, leading to improved generation of prion seeds for robust propagation.</p>

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Total propagation of yeast prion conformers in ssz1upf1∆ Hsp104T160M triple mutants

  • Chih-Yen King

摘要

It was reported that yeast proteins Ssz1 and Upf1 can cure certain [PSI+] variants in wild-type cells and there is a special class of variants whose propagation requires the triple mutation of ssz1upf1∆ Hsp104T160M. Attempts to isolate variants with the exact properties from the 74-D694 strain (and tested there) are not yet successful. The effort nevertheless leads to an alternative analysis about how ssz1∆ and upf1∆ mutations can help prion propagation. The cellular propagation of the yeast prion [PSI+] requires appropriate activities of the Hsp104 disaggregase. Many [PSI+] variants isolated in wild-type strains cannot propagate in cells expressing Hsp104T160M, which has weaker activities. Yet another group of [PSI+] variants shows the opposite, propagating well with Hsp104T160M but is eliminated by the wild-type protein. Deletion of SSZ1 and UPF1 genes in Hsp104T160M cells generates a just-right environment that supports the propagation of both types of [PSI+] variants. The pro-prion effect is not due to the removal of active curing by Ssz1 or Upf1–such curing activity is not observed for the variants. Rather, the double deletion causes a cellular response, which enables more efficient fragmentation of prion fibers, thus remedying the weak activity of Hsp104T160M. The “Goldilocks” conditioning seems also applicable to other yeast prions. Two [PIN+] variants that propagate well with wild-type Hsp104 but poorly with Hsp104∆N, lacking residues (2-147), can however thrive with the latter if Ssz1 and Upf1 are also deleted from the cell. In this case, the double deletion results in higher Hsp104∆N expression, leading to improved generation of prion seeds for robust propagation.