Literature DB >> 31822519

Combined Targeting of G9a and Checkpoint Kinase 1 Synergistically Inhibits Pancreatic Cancer Cell Growth by Replication Fork Collapse.

Guillermo Urrutia1, Ann Salmonson1, Jorge Toro-Zapata1, Thiago M de Assuncao1,2, Angela Mathison1,2, Nelson Dusetti3, Juan Iovanna3, Raul Urrutia1,2,4, Gwen Lomberk5,2,6.   

Abstract

Because of its dismal outcome, pancreatic ductal adenocarcinoma (PDAC) remains a therapeutic challenge making the testing of new pharmacologic tools a goal of paramount importance. Here, we developed a rational approach for inhibiting PDAC growth based on leveraging cell-cycle arrest of malignant cells at a phase that shows increased sensitivity to distinct epigenomic inhibitors. Specifically, we simultaneously inhibited checkpoint kinase 1 (Chk1) by prexasertib and the G9a histone methyltransferase with BRD4770, thereby targeting two key pathways for replication fork stability. Methodologically, the antitumor effects and molecular mechanisms of the combination were assessed by an extensive battery of assays, utilizing cell lines and patient-derived cells as well as 3D spheroids and xenografts. We find that the prexasertib-BRD4770 combination displays a synergistic effect on replication-associated phenomena, including cell growth, DNA synthesis, cell-cycle progression at S phase, and DNA damage signaling, ultimately leading to a highly efficient induction of cell death. Moreover, cellular and molecular data reveal that the synergistic effect of these pathways can be explained, at least in large part, by the convergence of both Chk1 and G9a functions at the level of the ATR-RPA-checkpoint pathway, which is operational during replication stress. Thus, targeting the epigenetic regulator G9a, which is necessary for replication fork stability, combined with inhibition of the DNA damage checkpoint, offers a novel approach for controlling PDAC growth through replication catastrophe. IMPLICATIONS: This study offers an improved, context-dependent, paradigm for the use of epigenomic inhibitors and provides mechanistic insight into their potential therapeutic use against PDAC. ©2019 American Association for Cancer Research.

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Year:  2019        PMID: 31822519      PMCID: PMC7056528          DOI: 10.1158/1541-7786.MCR-19-0490

Source DB:  PubMed          Journal:  Mol Cancer Res        ISSN: 1541-7786            Impact factor:   5.852


  49 in total

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Journal:  Neoplasia       Date:  1999-04       Impact factor: 5.715

3.  Oncogene-induced senescence is a DNA damage response triggered by DNA hyper-replication.

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Journal:  Nature       Date:  2006-11-30       Impact factor: 49.962

4.  Genomic analyses identify molecular subtypes of pancreatic cancer.

Authors:  Peter Bailey; David K Chang; Katia Nones; Amber L Johns; Ann-Marie Patch; Marie-Claude Gingras; David K Miller; Angelika N Christ; Tim J C Bruxner; Michael C Quinn; Craig Nourse; L Charles Murtaugh; Ivon Harliwong; Senel Idrisoglu; Suzanne Manning; Ehsan Nourbakhsh; Shivangi Wani; Lynn Fink; Oliver Holmes; Venessa Chin; Matthew J Anderson; Stephen Kazakoff; Conrad Leonard; Felicity Newell; Nick Waddell; Scott Wood; Qinying Xu; Peter J Wilson; Nicole Cloonan; Karin S Kassahn; Darrin Taylor; Kelly Quek; Alan Robertson; Lorena Pantano; Laura Mincarelli; Luis N Sanchez; Lisa Evers; Jianmin Wu; Mark Pinese; Mark J Cowley; Marc D Jones; Emily K Colvin; Adnan M Nagrial; Emily S Humphrey; Lorraine A Chantrill; Amanda Mawson; Jeremy Humphris; Angela Chou; Marina Pajic; Christopher J Scarlett; Andreia V Pinho; Marc Giry-Laterriere; Ilse Rooman; Jaswinder S Samra; James G Kench; Jessica A Lovell; Neil D Merrett; Christopher W Toon; Krishna Epari; Nam Q Nguyen; Andrew Barbour; Nikolajs Zeps; Kim Moran-Jones; Nigel B Jamieson; Janet S Graham; Fraser Duthie; Karin Oien; Jane Hair; Robert Grützmann; Anirban Maitra; Christine A Iacobuzio-Donahue; Christopher L Wolfgang; Richard A Morgan; Rita T Lawlor; Vincenzo Corbo; Claudio Bassi; Borislav Rusev; Paola Capelli; Roberto Salvia; Giampaolo Tortora; Debabrata Mukhopadhyay; Gloria M Petersen; Donna M Munzy; William E Fisher; Saadia A Karim; James R Eshleman; Ralph H Hruban; Christian Pilarsky; Jennifer P Morton; Owen J Sansom; Aldo Scarpa; Elizabeth A Musgrove; Ulla-Maja Hagbo Bailey; Oliver Hofmann; Robert L Sutherland; David A Wheeler; Anthony J Gill; Richard A Gibbs; John V Pearson; Nicola Waddell; Andrew V Biankin; Sean M Grimmond
Journal:  Nature       Date:  2016-02-24       Impact factor: 49.962

5.  Biweekly high-dose gemcitabine alone or in combination with capecitabine in patients with metastatic pancreatic adenocarcinoma: a randomized phase II trial.

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Journal:  Ann Oncol       Date:  2003-01       Impact factor: 32.976

6.  Gemcitabine in combination with oxaliplatin compared with gemcitabine alone in locally advanced or metastatic pancreatic cancer: results of a GERCOR and GISCAD phase III trial.

Authors:  C Louvet; R Labianca; P Hammel; G Lledo; M G Zampino; T André; A Zaniboni; M Ducreux; E Aitini; J Taïeb; R Faroux; C Lepere; A de Gramont
Journal:  J Clin Oncol       Date:  2005-05-20       Impact factor: 44.544

7.  Chk1 is an essential kinase that is regulated by Atr and required for the G(2)/M DNA damage checkpoint.

Authors:  Q Liu; S Guntuku; X S Cui; S Matsuoka; D Cortez; K Tamai; G Luo; S Carattini-Rivera; F DeMayo; A Bradley; L A Donehower; S J Elledge
Journal:  Genes Dev       Date:  2000-06-15       Impact factor: 11.361

8.  H2AX Phosphorylation: Its Role in DNA Damage Response and Cancer Therapy.

Authors:  Monika Podhorecka; Andrzej Skladanowski; Przemyslaw Bozko
Journal:  J Nucleic Acids       Date:  2010-08-03

Review 9.  Targeted drug delivery in pancreatic cancer.

Authors:  Xianjun Yu; Yuqing Zhang; Changyi Chen; Qizhi Yao; Min Li
Journal:  Biochim Biophys Acta       Date:  2009-10-22

10.  A small-molecule probe of the histone methyltransferase G9a induces cellular senescence in pancreatic adenocarcinoma.

Authors:  Yuan Yuan; Qiu Wang; Joshiawa Paulk; Stefan Kubicek; Melissa M Kemp; Drew J Adams; Alykhan F Shamji; Bridget K Wagner; Stuart L Schreiber
Journal:  ACS Chem Biol       Date:  2012-04-30       Impact factor: 5.100

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  3 in total

1.  G9a Promotes Invasion and Metastasis of Non-Small Cell Lung Cancer through Enhancing Focal Adhesion Kinase Activation via NF-κB Signaling Pathway.

Authors:  Ting Sun; Keqiang Zhang; Rajendra P Pangeni; Jun Wu; Wendong Li; Yong Du; Yuming Guo; Shyambabu Chaurasiya; Leonidas Arvanitis; Dan J Raz
Journal:  Mol Cancer Res       Date:  2020-12-09       Impact factor: 5.852

2.  Inhibition of histone methyltransferase G9a attenuates liver cancer initiation by sensitizing DNA-damaged hepatocytes to p53-induced apoptosis.

Authors:  Takuma Nakatsuka; Keisuke Tateishi; Hiroyuki Kato; Hiroaki Fujiwara; Keisuke Yamamoto; Yotaro Kudo; Hayato Nakagawa; Yasuo Tanaka; Hideaki Ijichi; Tsuneo Ikenoue; Takeaki Ishizawa; Kiyoshi Hasegawa; Makoto Tachibana; Yoichi Shinkai; Kazuhiko Koike
Journal:  Cell Death Dis       Date:  2021-01-19       Impact factor: 8.469

3.  Plastin-3 is a diagnostic and prognostic marker for pancreatic adenocarcinoma and distinguishes from diffuse large B-cell lymphoma.

Authors:  Fei Xiong; Guan-Hua Wu; Bing Wang; Yong-Jun Chen
Journal:  Cancer Cell Int       Date:  2021-08-04       Impact factor: 5.722

  3 in total

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