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Capsaicin binds the N-terminus of Hsp90, induces lysosomal degradation of Hsp70, and enhances the anti-tumor effects of 17-AAG (Tanespimycin)
by
Reilly, Christopher A.
, Singh, Digvijay
, Alfa, Eyad
, Popik, Vladimir
, Llbiyi, Taoufik
, Chadli, Ahmed
, Patwardhan, Chaitanya A.
, Korkaya, Hasan
, Panda, Siva
, Kommalapati, Vamsi Krishna
, Horuzsko, Anatolij
in
631/45/470
/ 631/45/535
/ 631/67/1059
/ Autophagy
/ Binding sites
/ Cancer
/ Cancer therapies
/ Capsaicin
/ Cell culture
/ Degradation
/ Heat shock proteins
/ Hsc70 protein
/ Hsp70 protein
/ Hsp90 protein
/ Humanities and Social Sciences
/ Inhibitors
/ Lysosomes
/ multidisciplinary
/ Mutagenesis
/ N-Terminus
/ Progesterone
/ Prostate cancer
/ Proteomics
/ Science
/ Science (multidisciplinary)
/ Tumors
2023
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Capsaicin binds the N-terminus of Hsp90, induces lysosomal degradation of Hsp70, and enhances the anti-tumor effects of 17-AAG (Tanespimycin)
by
Reilly, Christopher A.
, Singh, Digvijay
, Alfa, Eyad
, Popik, Vladimir
, Llbiyi, Taoufik
, Chadli, Ahmed
, Patwardhan, Chaitanya A.
, Korkaya, Hasan
, Panda, Siva
, Kommalapati, Vamsi Krishna
, Horuzsko, Anatolij
in
631/45/470
/ 631/45/535
/ 631/67/1059
/ Autophagy
/ Binding sites
/ Cancer
/ Cancer therapies
/ Capsaicin
/ Cell culture
/ Degradation
/ Heat shock proteins
/ Hsc70 protein
/ Hsp70 protein
/ Hsp90 protein
/ Humanities and Social Sciences
/ Inhibitors
/ Lysosomes
/ multidisciplinary
/ Mutagenesis
/ N-Terminus
/ Progesterone
/ Prostate cancer
/ Proteomics
/ Science
/ Science (multidisciplinary)
/ Tumors
2023
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Capsaicin binds the N-terminus of Hsp90, induces lysosomal degradation of Hsp70, and enhances the anti-tumor effects of 17-AAG (Tanespimycin)
by
Reilly, Christopher A.
, Singh, Digvijay
, Alfa, Eyad
, Popik, Vladimir
, Llbiyi, Taoufik
, Chadli, Ahmed
, Patwardhan, Chaitanya A.
, Korkaya, Hasan
, Panda, Siva
, Kommalapati, Vamsi Krishna
, Horuzsko, Anatolij
in
631/45/470
/ 631/45/535
/ 631/67/1059
/ Autophagy
/ Binding sites
/ Cancer
/ Cancer therapies
/ Capsaicin
/ Cell culture
/ Degradation
/ Heat shock proteins
/ Hsc70 protein
/ Hsp70 protein
/ Hsp90 protein
/ Humanities and Social Sciences
/ Inhibitors
/ Lysosomes
/ multidisciplinary
/ Mutagenesis
/ N-Terminus
/ Progesterone
/ Prostate cancer
/ Proteomics
/ Science
/ Science (multidisciplinary)
/ Tumors
2023
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Capsaicin binds the N-terminus of Hsp90, induces lysosomal degradation of Hsp70, and enhances the anti-tumor effects of 17-AAG (Tanespimycin)
Journal Article
Capsaicin binds the N-terminus of Hsp90, induces lysosomal degradation of Hsp70, and enhances the anti-tumor effects of 17-AAG (Tanespimycin)
2023
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Overview
Heat shock protein 90 (Hsp90) and its co-chaperones promote cancer, and targeting Hsp90 holds promise for cancer treatment. Most of the efforts to harness this potential have focused on targeting the Hsp90 N-terminus ATP binding site. Although newer-generation inhibitors have shown improved efficacy in aggressive cancers, induction of the cellular heat shock response (HSR) by these inhibitors is thought to limit their clinical efficacy. Therefore, Hsp90 inhibitors with novel mechanisms of action and that do not trigger the HSR would be advantageous. Here, we investigated the mechanism by which capsaicin inhibits Hsp90. Through mutagenesis, chemical modifications, and proteomic studies, we show that capsaicin binds to the N-terminus of Hsp90 and inhibits its ATPase activity. Consequently, capsaicin and its analogs inhibit Hsp90 ATPase-dependent progesterone receptor reconstitution in vitro
.
Capsaicin did not induce the HSR, instead, it promoted the degradation of Hsp70 through the lysosome-autophagy pathway. Remarkably, capsaicin did not induce degradation of the constitutively expressed cognate Hsc70, indicating selectivity for Hsp70. Combined treatments of capsaicin and the Hsp90 inhibitor 17-AAG improved the anti-tumor efficacy of 17-AAG in cell culture and tridimensional tumor spheroid growth assays using breast and prostate cancer models. Consistent with this, in silico docking studies revealed that capsaicin binding to the ATP binding site of Hsp90 was distinct from classical N-terminus Hsp90 inhibitors, indicating a novel mechanism of action. Collectively, these findings support the use of capsaicin as a chemical scaffold to develop novel Hsp90 N-terminus inhibitors as well as its ability to be a potential cancer co-therapeutic.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
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