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Discovery of a ZIP7 inhibitor from a Notch pathway screen.


ABSTRACT: The identification of activating mutations in NOTCH1 in 50% of T cell acute lymphoblastic leukemia has generated interest in elucidating how these mutations contribute to oncogenic transformation and in targeting the pathway. A phenotypic screen identified compounds that interfere with trafficking of Notch and induce apoptosis via an endoplasmic reticulum (ER) stress mechanism. Target identification approaches revealed a role for SLC39A7 (ZIP7), a zinc transport family member, in governing Notch trafficking and signaling. Generation and sequencing of a compound-resistant cell line identified a V430E mutation in ZIP7 that confers transferable resistance to the compound NVS-ZP7-4. NVS-ZP7-4 altered zinc in the ER, and an analog of the compound photoaffinity labeled ZIP7 in cells, suggesting a direct interaction between the compound and ZIP7. NVS-ZP7-4 is the first reported chemical tool to probe the impact of modulating ER zinc levels and investigate ZIP7 as a novel druggable node in the Notch pathway.

SUBMITTER: Nolin E 

PROVIDER: S-EPMC7251565 | biostudies-literature | 2019 Feb

REPOSITORIES: biostudies-literature

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Discovery of a ZIP7 inhibitor from a Notch pathway screen.

Nolin Erin E   Gans Sara S   Llamas Luis L   Bandyopadhyay Somnath S   Brittain Scott M SM   Bernasconi-Elias Paula P   Carter Kyle P KP   Loureiro Joseph J JJ   Thomas Jason R JR   Schirle Markus M   Yang Yi Y   Guo Ning N   Roma Guglielmo G   Schuierer Sven S   Beibel Martin M   Lindeman Alicia A   Sigoillot Frederic F   Chen Amy A   Xie Kevin X KX   Ho Samuel S   Reece-Hoyes John J   Weihofen Wilhelm A WA   Tyskiewicz Kayla K   Hoepfner Dominic D   McDonald Richard I RI   Guthrie Nicolette N   Dogra Abhishek A   Guo Haibing H   Shao Jian J   Ding Jian J   Canham Stephen M SM   Boynton Geoff G   George Elizabeth L EL   Kang Zhao B ZB   Antczak Christophe C   Porter Jeffery A JA   Wallace Owen O   Tallarico John A JA   Palmer Amy E AE   Jenkins Jeremy L JL   Jain Rishi K RK   Bushell Simon M SM   Fryer Christy J CJ  

Nature chemical biology 20190114 2


The identification of activating mutations in NOTCH1 in 50% of T cell acute lymphoblastic leukemia has generated interest in elucidating how these mutations contribute to oncogenic transformation and in targeting the pathway. A phenotypic screen identified compounds that interfere with trafficking of Notch and induce apoptosis via an endoplasmic reticulum (ER) stress mechanism. Target identification approaches revealed a role for SLC39A7 (ZIP7), a zinc transport family member, in governing Notch  ...[more]

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