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Sulfopin is a covalent inhibitor of Pin1 that blocks Myc-driven tumors in vivo.


ABSTRACT: The peptidyl-prolyl isomerase, Pin1, is exploited in cancer to activate oncogenes and inactivate tumor suppressors. However, despite considerable efforts, Pin1 has remained an elusive drug target. Here, we screened an electrophilic fragment library to identify covalent inhibitors targeting Pin1's active site Cys113, leading to the development of Sulfopin, a nanomolar Pin1 inhibitor. Sulfopin is highly selective, as validated by two independent chemoproteomics methods, achieves potent cellular and in vivo target engagement and phenocopies Pin1 genetic knockout. Pin1 inhibition had only a modest effect on cancer cell line viability. Nevertheless, Sulfopin induced downregulation of c-Myc target genes, reduced tumor progression and conferred survival benefit in murine and zebrafish models of MYCN-driven neuroblastoma, and in a murine model of pancreatic cancer. Our results demonstrate that Sulfopin is a chemical probe suitable for assessment of Pin1-dependent pharmacology in cells and in vivo, and that Pin1 warrants further investigation as a potential cancer drug target.

SUBMITTER: Dubiella C 

PROVIDER: S-EPMC9119696 | biostudies-literature | 2021 Sep

REPOSITORIES: biostudies-literature

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Sulfopin is a covalent inhibitor of Pin1 that blocks Myc-driven tumors in vivo.

Dubiella Christian C   Pinch Benika J BJ   Koikawa Kazuhiro K   Zaidman Daniel D   Poon Evon E   Manz Theresa D TD   Nabet Behnam B   He Shuning S   Resnick Efrat E   Rogel Adi A   Langer Ellen M EM   Daniel Colin J CJ   Seo Hyuk-Soo HS   Chen Ying Y   Adelmant Guillaume G   Sharifzadeh Shabnam S   Ficarro Scott B SB   Jamin Yann Y   Martins da Costa Barbara B   Zimmerman Mark W MW   Lian Xiaolan X   Kibe Shin S   Kozono Shingo S   Doctor Zainab M ZM   Browne Christopher M CM   Yang Annan A   Stoler-Barak Liat L   Shah Richa B RB   Vangos Nicholas E NE   Geffken Ezekiel A EA   Oren Roni R   Koide Eriko E   Sidi Samuel S   Shulman Ziv Z   Wang Chu C   Marto Jarrod A JA   Dhe-Paganon Sirano S   Look Thomas T   Zhou Xiao Zhen XZ   Lu Kun Ping KP   Sears Rosalie C RC   Chesler Louis L   Gray Nathanael S NS   London Nir N  

Nature chemical biology 20210510 9


The peptidyl-prolyl isomerase, Pin1, is exploited in cancer to activate oncogenes and inactivate tumor suppressors. However, despite considerable efforts, Pin1 has remained an elusive drug target. Here, we screened an electrophilic fragment library to identify covalent inhibitors targeting Pin1's active site Cys113, leading to the development of Sulfopin, a nanomolar Pin1 inhibitor. Sulfopin is highly selective, as validated by two independent chemoproteomics methods, achieves potent cellular an  ...[more]

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