REVIEW
The disruption of protein−protein interactions with co-chaperones and client substrates as a strategy towards Hsp90 inhibition

https://doi.org/10.1016/j.apsb.2020.11.015Get rights and content
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Abstract

The 90-kiloDalton (kD) heat shock protein (Hsp90) is a ubiquitous, ATP-dependent molecular chaperone whose primary function is to ensure the proper folding of several hundred client protein substrates. Because many of these clients are overexpressed or become mutated during cancer progression, Hsp90 inhibition has been pursued as a potential strategy for cancer as one can target multiple oncoproteins and signaling pathways simultaneously. The first discovered Hsp90 inhibitors, geldanamycin and radicicol, function by competitively binding to Hsp90's N-terminal binding site and inhibiting its ATPase activity. However, most of these N-terminal inhibitors exhibited detrimental activities during clinical evaluation due to induction of the pro-survival heat shock response as well as poor selectivity amongst the four isoforms. Consequently, alternative approaches to Hsp90 inhibition have been pursued and include C-terminal inhibition, isoform-selective inhibition, and the disruption of Hsp90 protein−protein interactions. Since the Hsp90 protein folding cycle requires the assembly of Hsp90 into a large heteroprotein complex, along with various co-chaperones and immunophilins, the development of small molecules that prevent assembly of the complex offers an alternative method of Hsp90 inhibition.

Graphical abstract

Many natural products and small molecules have been reported to disrupt protein–protein interactions (PPIs) between Hsp90 and its co-chaperones and client substrates. Such results offer support to the disruption of PPIs as an alternative strategy for selective inhibition of this molecular chaperone.

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Key words

Hsp90
Protein−protein interactions
Disruptors
Natural products
Small molecules
Peptidomimetics

Abbreviations

ADP
adenosine diphosphate
Aha1
activator of Hsp90 ATPase homologue 1
ATP
adenosine triphosphate
Cdc37
cell division cycle 37
CTD
C-terminal domain
Grp94
94-kD glucose-regulated protein
Her-2
human epidermal growth factor receptor-2
hERG
human ether-à-go-go-related gene
HIF-1α
hypoxia-inducing factor-1α
HIP
Hsp70-interaction protein
HOP
Hsp70‒Hsp90 organizing protein
HSQC
heteronuclear single quantum coherence
Hsp90
90-kD heat shock protein
MD
middle domain
NTD
N-terminal domain
PPI
protein−protein interaction
SAHA
suberoylanilide hydroxamic acid
SAR
structure–activity relationship
SUMO
small ubiquitin-like modifier
TRAP1
Hsp75tumor necrosis factor receptor associated protein 1
TROSY
transverse relaxation-optimized spectroscopy
TPR2A
tetratricopeptide-containing repeat 2A

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Peer review under responsibility of Chinese Pharmaceutical Association and Institute of Materia Medica, Chinese Academy of Medical Sciences.