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Updated: Mar 14, 2026

Purification of Hsp104, a Protein Disaggregase
Published on: September 30, 2011
The small heat shock protein Hsp31 cooperates with Hsp104 to modulate Sup35 prion aggregation
Kiran Aslam1, Chai-Jui Tsai1, Tony R Hazbun1
1a Department of Medicinal Chemistry and Molecular Pharmacology and the Purdue University Center for Cancer Research , Purdue University , West Lafayette , IN , USA.
Abstract:
The yeast homolog of DJ-1, Hsp31, is a multifunctional protein that is involved in several cellular pathways including detoxification of the toxic metabolite methylglyoxal and as a protein deglycase. Prior studies ascribed Hsp31 as a molecular chaperone that can inhibit α-Syn aggregation in vitro and alleviate its toxicity in vivo. It was also shown that Hsp31 inhibits Sup35 aggregate formation in yeast, however, it is unknown if Hsp31 can modulate [PSI+] phenotype and Sup35 prionogenesis. Other small heat shock proteins, Hsp26 and Hsp42 are known to be a part of a synergistic proteostasis network that inhibits Sup35 prion formation and promotes its disaggregation. Here, we establish that Hsp31 inhibits Sup35 [PSI+] prion formation in collaboration with a well-known disaggregase, Hsp104. Hsp31 transiently prevents prion induction but does not suppress induction upon prolonged expression of Sup35 indicating that Hsp31 can be overcome by larger aggregates. In addition, elevated levels of Hsp31 do not cure [PSI+] strains indicating that Hsp31 cannot intervene in a pre-existing prion oligomerization cycle. However, Hsp31 can modulate prion status in cooperation with Hsp104 because it inhibits Sup35 aggregate formation and potentiates [PSI+] prion curing upon overexpression of Hsp104. The absence of Hsp31 reduces [PSI+] prion curing by Hsp104 without influencing its ability to rescue cellular thermotolerance. Hsp31 did not synergize with Hsp42 to modulate the [PSI+] phenotype suggesting that both proteins act on similar stages of the prion cycle. We also showed that Hsp31 physically interacts with Hsp104 and together they prevent Sup35 prion toxicity to greater extent than if they were expressed individually. These results elucidate a mechanism for Hsp31 on prion modulation that suggest it acts at a distinct step early in the Sup35 aggregation process that is different from Hsp104. This is the first demonstration of the modulation of [PSI+] status by the chaperone action of Hsp31. The delineation of Hsp31's role in the chaperone cycle has implications for understanding the role of the DJ-1 superfamily in controlling misfolded proteins in neurodegenerative disease and cancer.
Insights
The yeast protein Hsp31 (DJ-1 homolog) inhibits Sup35 prion formation and toxicity by interacting with Hsp104. This chaperone action clarifies Hsp31
Area of Science:
- Cell Biology
- Protein Misfolding Diseases
- Neurodegenerative Disorders
Background:
- Hsp31 is a yeast protein homologous to DJ-1, involved in detoxification and protein deglycation.
- Hsp31 acts as a molecular chaperone, inhibiting alpha-synuclein aggregation and toxicity.
- The role of Hsp31 in modulating yeast prion formation ([PSI+]) and Sup35 prionogenesis was previously unknown.
Purpose of the Study:
- To investigate the role of Hsp31 in Sup35 prion formation and modulation of the [PSI+] phenotype.
- To determine if Hsp31 collaborates with other heat shock proteins, specifically Hsp104 and Hsp42, in prion regulation.
- To elucidate the mechanism by which Hsp31 influences Sup35 aggregation and prion toxicity.
Main Methods:
- Yeast genetics to study Sup35 prion formation and curing.
- Protein interaction studies to assess physical binding between Hsp31 and Hsp104.
- Analysis of prion toxicity and cellular thermotolerance under varying Hsp31 and Hsp104 expression levels.
Main Results:
- Hsp31 inhibits de novo Sup35 [PSI+] prion formation in collaboration with Hsp104.
- Hsp31's inhibition of prion formation is transient and can be overcome by prolonged Sup35 expression or pre-existing aggregates.
- Hsp31 potentiates Hsp104-mediated [PSI+] prion curing and reduces Sup35 prion toxicity, acting at an early aggregation step distinct from Hsp104.
Conclusions:
- Hsp31 modulates the [PSI+] prion status by interfering with early Sup35 aggregation, distinct from Hsp104's disaggregase activity.
- Hsp31 physically interacts with Hsp104, enhancing the clearance of Sup35 aggregates and mitigating prion toxicity.
- These findings highlight the chaperone function of Hsp31 in prion modulation and have implications for understanding DJ-1 superfamily roles in proteinopathies.
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