Hsp104-dependent remodeling of prion complexes mediates protein-only inheritance

被引:111
作者
Satpute-Krishnan, Prasanna [1 ]
Langseth, Sara X. [1 ]
Serio, Tricia R. [1 ]
机构
[1] Brown Univ, Dept Mol Biol Cell Biol & Biochem, Providence, RI 02912 USA
关键词
D O I
10.1371/journal.pbio.0050024
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Inheritance of phenotypic traits depends on two key events: replication of the determinant of that trait and partitioning of these copies between mother and daughter cells. Although these processes are well understood for nucleic acid-based genes, the mechanisms by which protein-only or prion-based genetic elements direct phenotypic inheritance are poorly understood. Here, we report a process crucial for inheritance of the Saccharomyces cerevisiae prion [PSI+], a self-replicating conformer of the Sup35 protein. By tightly controlling expression of a Sup35-GFP fusion, we directly observe remodeling of existing Sup35([PSI+]) complexes in vivo. This dynamic change in Sup35([PSI+]) is lost when the molecular chaperone Hsp104, a factor essential for propagation of all yeast prions, is functionally impaired. The loss of Sup35([PSI+]) remodeling by Hsp104 decreases the mobility of these complexes in the cytosol, creates a segregation bias that limits their transmission to daughter cells, and consequently diminishes the efficiency of conversion of newly made Sup35 to the prion form. Our observations resolve several seemingly conflicting reports on the mechanism of Hsp104 action and point to a single Hsp104-dependent event in prion propagation.
引用
收藏
页码:251 / 262
页数:12
相关论文
共 65 条
[11]   Guanidine hydrochloride blocks a critical step in the propagation of the prion-like determinant [PSI+] of Saccharomyces cerevisiae [J].
Eaglestone, SS ;
Ruddock, LW ;
Cox, BS ;
Tuite, MF .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2000, 97 (01) :240-244
[12]   The elimination of the yeast [PSI+] prion by guanidine hydrochloride is the result of Hsp104 inactivation [J].
Ferreira, PC ;
Ness, F ;
Edwards, SR ;
Cox, BS ;
Tuite, MF .
MOLECULAR MICROBIOLOGY, 2001, 40 (06) :1357-1369
[13]   Self-seeded fibers formed by Sup35, the protein determinant of [PSI+], a heritable prion-like factor of S-cerevisiae [J].
Glover, JR ;
Kowal, AS ;
Schirmer, EC ;
Patino, MM ;
Liu, JJ ;
Lindquist, S .
CELL, 1997, 89 (05) :811-819
[14]   Nuclear localization of the C2H2 zinc finger protein Msn2p is regulated by stress and protein kinase A activity [J].
Görner, W ;
Durchschlag, E ;
Martinez-Pastor, MT ;
Estruch, F ;
Ammerer, G ;
Hamilton, B ;
Ruis, H ;
Schüller, C .
GENES & DEVELOPMENT, 1998, 12 (04) :586-597
[15]   SELF-REPLICATION AND SCRAPIE [J].
GRIFFITH, JS .
NATURE, 1967, 215 (5105) :1043-&
[16]   The prion curing agent guanidinium chloride specifically inhibits ATP hydrolysis by Hsp104 [J].
Grimminger, V ;
Richter, K ;
Imhof, A ;
Buchner, J ;
Walter, S .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (09) :7378-7383
[17]   INVIVO DEGRADATION OF A TRANSCRIPTIONAL REGULATOR - THE YEAST ALPHA-2 REPRESSOR [J].
HOCHSTRASSER, M ;
VARSHAVSKY, A .
CELL, 1990, 61 (04) :697-708
[18]   N-terminal domain of yeast Hsp104 chaperone is dispensable for thermotolerance and prion propagation but necessary for curing prions by Hsp104 overexpression [J].
Hung, Guo-Chiuan ;
Masison, Daniel C. .
GENETICS, 2006, 173 (02) :611-620
[19]   Chaperoning prions: the cellular machinery for propagating an infectious protein? [J].
Jones, GW ;
Tuite, MF .
BIOESSAYS, 2005, 27 (08) :823-832
[20]  
Jung G, 2000, GENETICS, V156, P559