4.8 Article

The role of Sis1 in the maintenance of the [RNQ+] prion

期刊

EMBO JOURNAL
卷 20, 期 10, 页码 2435-2442

出版社

WILEY
DOI: 10.1093/emboj/20.10.2435

关键词

chaperone; prion; Rnq 1; Sis 1; yeast

资金

  1. NIGMS NIH HHS [5 F31 GM18507-05, R01 GM025874, R37 GM025874, T32 GM007183, 5T32 GM07183-24, F31 GM018507, GM27870, GM25874, R01 GM027870, T32 GM007281, 5T32 GM07281] Funding Source: Medline

向作者/读者索取更多资源

Yeast prions are inherited through proteins that exist in alternate, self-perpetuating conformational states. The mechanisms by which these states arise and are maintained are still poorly defined. Here we demonstrate for the first time that Sis1, a member of the Hsp40 chaperone family, plays a critical role in the maintenance of a prion, The prion [RNQ(+)] is formed by Rnq1, which is present in the same physical complex as Sis1, but only when Rnq1 is in the prion state. The G/F domain of Sis1 is dispensable for rapid growth on rich medium, but is required for [RNQ(+)] maintenance, distinguishing essential regions of Sis1 from those needed for prion interaction. A specific Sis1 deletion mutant altered the physical aggregation pattern of Rnq1 without curing the prion, This variant state propagated in a heritable fashion after wild-type Sis1 function was restored, indicating that multiple physical states are compatible with prion maintenance and that changes in chaperone activity can create prion variants, Using a prion chimera we demonstrate that the prion-determinant domain of Rnq1 is genetically sufficient for control by Sis1.

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