Javascript must be enabled to continue!
Both the Charged Linker Region and ATPase Domain of Hsp90 Are Essential for Rad51-Dependent DNA Repair
View through CrossRef
ABSTRACT
The inhibition of Hsp90 in cancerous cells has been correlated with the reduction in double-strand break (DSB repair) activity. However, the precise effect of Hsp90 on the DSB repair pathway in normal cells has remained enigmatic. Our results show that the Hsp82 chaperone, the ortholog of mammalian Hsp90, is indispensable for homologous-recombination (HR)-mediated DNA repair in the budding yeast
Saccharomyces cerevisiae
. A considerable reduction in cell viability is observed in an Hsp82-inactivated mutant upon methyl methanesulfonate (MMS) treatment as well as upon UV treatment. The loss of Hsp82 function results in a dramatic decrease in gene-targeting efficiency and a marked decrease in the endogenous levels of the key recombination proteins Rad51 and Rad52 without any notable change in the levels of
RAD51
or
RAD52
transcripts. Our results establish Rad51 as a client of Hsp82, since they interact physically
in vivo
, and also show that when Hsp82 is inhibited by 17-AAG, Rad51 undergoes proteasomal degradation. By analyzing a number of point mutants with mutations in different domains of Hsp82, we observe a strong association between the sensitivity of an ATPase mutant of Hsp82 to DNA damage and the decreases in the amounts of Rad51 and Rad52 proteins. The most significant observations include the dramatic abrogation of HR activity and the marked decrease in Rad51 focus formation in the charged linker deletion mutant of Hsp82 upon MMS treatment. The charged linker region of Hsp82 is evolutionarily conserved in all eukaryotes, but until now, no biological significance has been assigned to it. Our findings elucidate the importance of this region in DNA repair for the first time.
American Society for Microbiology
Title: Both the Charged Linker Region and ATPase Domain of Hsp90 Are Essential for Rad51-Dependent DNA Repair
Description:
ABSTRACT
The inhibition of Hsp90 in cancerous cells has been correlated with the reduction in double-strand break (DSB repair) activity.
However, the precise effect of Hsp90 on the DSB repair pathway in normal cells has remained enigmatic.
Our results show that the Hsp82 chaperone, the ortholog of mammalian Hsp90, is indispensable for homologous-recombination (HR)-mediated DNA repair in the budding yeast
Saccharomyces cerevisiae
.
A considerable reduction in cell viability is observed in an Hsp82-inactivated mutant upon methyl methanesulfonate (MMS) treatment as well as upon UV treatment.
The loss of Hsp82 function results in a dramatic decrease in gene-targeting efficiency and a marked decrease in the endogenous levels of the key recombination proteins Rad51 and Rad52 without any notable change in the levels of
RAD51
or
RAD52
transcripts.
Our results establish Rad51 as a client of Hsp82, since they interact physically
in vivo
, and also show that when Hsp82 is inhibited by 17-AAG, Rad51 undergoes proteasomal degradation.
By analyzing a number of point mutants with mutations in different domains of Hsp82, we observe a strong association between the sensitivity of an ATPase mutant of Hsp82 to DNA damage and the decreases in the amounts of Rad51 and Rad52 proteins.
The most significant observations include the dramatic abrogation of HR activity and the marked decrease in Rad51 focus formation in the charged linker deletion mutant of Hsp82 upon MMS treatment.
The charged linker region of Hsp82 is evolutionarily conserved in all eukaryotes, but until now, no biological significance has been assigned to it.
Our findings elucidate the importance of this region in DNA repair for the first time.
Related Results
Hsp90/Cdc37 Chaperone/co-chaperone complex, a novel junction anticancer target elucidated by the mode of action of herbal drug Withaferin A
Hsp90/Cdc37 Chaperone/co-chaperone complex, a novel junction anticancer target elucidated by the mode of action of herbal drug Withaferin A
Abstract
Background
HSPs (Heat shock proteins) are highly conserved ubiquitous proteins among species which are involved in maintaining appropria...
Human AAA+ ATPase FIGNL1 suppresses RAD51-mediated ultra-fine bridge formation
Human AAA+ ATPase FIGNL1 suppresses RAD51-mediated ultra-fine bridge formation
Abstract
RAD51 filament is crucial for the homology-dependent repair of DNA double-strand breaks and stalled DNA replication fork protection. Positive and negative r...
BRCA2 chaperones RAD51 to single molecules of RPA-coated ssDNA
BRCA2 chaperones RAD51 to single molecules of RPA-coated ssDNA
Abstract
Mutations in the breast cancer susceptibility gene, BRCA2, greatly increase an individual’s lifetime risk of developing breast and ovarian cancers. BRCA2 s...
Hsp90 and associates shaping parasite biology
Hsp90 and associates shaping parasite biology
ABSTRACT
Hsp90 is considered to be the master regulator of chaperone activity within the cellular context. In addition t...
Remodeling of the Rad51 DNA Strand-Exchange Protein by the Srs2 Helicase
Remodeling of the Rad51 DNA Strand-Exchange Protein by the Srs2 Helicase
Abstract
Homologous recombination is associated with the dynamic assembly and disassembly of DNA–protein complexes. Assembly of a nucleoprotein filament comprising s...
The role of helicases and helicase-like proteins in homologous recombination
The role of helicases and helicase-like proteins in homologous recombination
Homologous recombination is important for repair of the most harmful types of DNA damage including DNA double-strand breaks, interstrand cross-links, and for chromosome segregation...
Abstract 3098: Leukemia stem cells demonstrate enhanced DNA damage repair and chemoresistance in AML
Abstract 3098: Leukemia stem cells demonstrate enhanced DNA damage repair and chemoresistance in AML
Abstract
Leukemia stem cells demonstrate enhanced DNA damage repair and chemoresistance in AML
Relapse of acute myeloid leukemia (AML) is common and t...
Inhibition of DNA repair protein RAD51 affects porcine preimplantation embryo development
Inhibition of DNA repair protein RAD51 affects porcine preimplantation embryo development
Homologous recombination (HR) plays a critical role in facilitating replication fork progression when the polymerase complex encounters a blocking DNA lesion, and it also serves as...

