Pharmacological inhibition of PARP6 triggers multipolar spindle formation and demonstrates therapeutic effects in breast cancer
File(s)R1-Wang et al PARP6 Manuscript.docx (171.4 KB)
Accepted version
Author(s)
Type
Journal Article
Abstract
PARP proteins represent a class of post-translational modification enzymes with diverse cellular functions. Targeting PARPs has proven to be efficacious clinically, but exploration of the therapeutic potential of PARP inhibition has been limited to targeting poly(ADP-ribose) generating PARP, including PARP1/2/3 and tankyrases. The cancer-related functions of mono(ADP-ribose) generating PARP, including PARP6, remain largely uncharacterized. Here, we report a novel therapeutic strategy targeting PARP6 using the first reported PARP6 inhibitors. By screening a collection of PARP compounds for their ability to induce mitotic defects, we uncovered a robust correlation between PARP6 inhibition and induction of multipolar spindle (MPS) formation, which was phenocopied by PARP6 knockdown. Treatment with AZ0108, a PARP6 inhibitor with a favorable pharmacokinetic profile, potently induced the MPS phenotype, leading to apoptosis in a subset of breast cancer cells in vitro and antitumor effects in vivo. In addition, Chk1 was identified as a specific substrate of PARP6 and was further confirmed by enzymatic assays and by mass spectrometry. Furthermore, when modification of Chk1 was inhibited with AZ0108 in breast cancer cells, we observed marked upregulation of p-S345 Chk1 accompanied by defects in mitotic signaling. Together, these results establish proof-of-concept antitumor efficacy through PARP6 inhibition and highlight a novel function of PARP6 in maintaining centrosome integrity via direct ADP-ribosylation of Chk1 and modulation of its activity.
Date Issued
2018-10-08
Date Acceptance
2018-09-13
Citation
Cancer Research, 78 (23), pp.6691-6702
ISSN
1538-7445
Publisher
American Association for Cancer Research
Start Page
6691
End Page
6702
Journal / Book Title
Cancer Research
Volume
78
Issue
23
Copyright Statement
©2018 American Association for Cancer Research.
Subjects
1112 Oncology And Carcinogenesis
Oncology & Carcinogenesis
Publication Status
Published
Date Publish Online
2018-10-08