Literature DB >> 26206334

R-Ketorolac Targets Cdc42 and Rac1 and Alters Ovarian Cancer Cell Behaviors Critical for Invasion and Metastasis.

Yuna Guo1, S Ray Kenney2, Carolyn Y Muller3, Sarah Adams3, Teresa Rutledge3, Elsa Romero4, Cristina Murray-Krezan5, Rytis Prekeris6, Larry A Sklar1, Laurie G Hudson2, Angela Wandinger-Ness7.   

Abstract

Cdc42 (cell division control protein 42) and Rac1 (Ras-related C3 botulinum toxin substrate 1) are attractive therapeutic targets in ovarian cancer based on established importance in tumor cell migration, adhesion, and invasion. Despite a predicted benefit, targeting GTPases has not yet been translated to clinical practice. We previously established that Cdc42 and constitutively active Rac1b are overexpressed in primary ovarian tumor tissues. Through high-throughput screening and computational shape homology approaches, we identified R-ketorolac as a Cdc42 and Rac1 inhibitor, distinct from the anti-inflammatory, cyclooxygenase inhibitory activity of S-ketorolac. In the present study, we establish R-ketorolac as an allosteric inhibitor of Cdc42 and Rac1. Cell-based assays validate R-ketorolac activity against Cdc42 and Rac1. Studies on immortalized human ovarian adenocarcinoma cells (SKOV3ip) and primary patient-derived ovarian cancer cells show that R-ketorolac is a robust inhibitor of growth factor or serum-dependent Cdc42 and Rac1 activation with a potency and cellular efficacy similar to small-molecule inhibitors of Cdc42 (CID2950007/ML141) and Rac1 (NSC23766). Furthermore, GTPase inhibition by R-ketorolac reduces downstream p21-activated kinases (PAK1/PAK2) effector activation by >80%. Multiple assays of cell behavior using SKOV3ip and primary patient-derived ovarian cancer cells show that R-ketorolac significantly inhibits cell adhesion, migration, and invasion. In summary, we provide evidence for R-ketorolac as a direct inhibitor of Cdc42 and Rac1 that is capable of modulating downstream GTPase-dependent, physiologic responses, which are critical to tumor metastasis. Our findings demonstrate the selective inhibition of Cdc42 and Rac1 GTPases by an FDA-approved drug, racemic ketorolac, that can be used in humans. ©2015 American Association for Cancer Research.

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Year:  2015        PMID: 26206334      PMCID: PMC4596774          DOI: 10.1158/1535-7163.MCT-15-0419

Source DB:  PubMed          Journal:  Mol Cancer Ther        ISSN: 1535-7163            Impact factor:   6.261


  48 in total

1.  Rational design and characterization of a Rac GTPase-specific small molecule inhibitor.

Authors:  Yuan Gao; J Bradley Dickerson; Fukun Guo; Jie Zheng; Yi Zheng
Journal:  Proc Natl Acad Sci U S A       Date:  2004-05-05       Impact factor: 11.205

Review 2.  Molecular pathways: targeting p21-activated kinase 1 signaling in cancer--opportunities, challenges, and limitations.

Authors:  Jeyanthy Eswaran; Da-Qiang Li; Anil Shah; Rakesh Kumar
Journal:  Clin Cancer Res       Date:  2012-05-17       Impact factor: 12.531

Review 3.  The role of the fallopian tube in the origin of ovarian cancer.

Authors:  Britt K Erickson; Michael G Conner; Charles N Landen
Journal:  Am J Obstet Gynecol       Date:  2013-04-10       Impact factor: 8.661

4.  Pharmacological properties of Y-27632, a specific inhibitor of rho-associated kinases.

Authors:  T Ishizaki; M Uehata; I Tamechika; J Keel; K Nonomura; M Maekawa; S Narumiya
Journal:  Mol Pharmacol       Date:  2000-05       Impact factor: 4.436

5.  Primary culture of ovarian surface epithelial cells and ascites-derived ovarian cancer cells from patients.

Authors:  Trevor G Shepherd; Brigitte L Thériault; Elizabeth J Campbell; Mark W Nachtigal
Journal:  Nat Protoc       Date:  2006       Impact factor: 13.491

Review 6.  RAC1: an emerging therapeutic option for targeting cancer angiogenesis and metastasis.

Authors:  Hemant K Bid; Ryan D Roberts; Parmeet K Manchanda; Peter J Houghton
Journal:  Mol Cancer Ther       Date:  2013-09-26       Impact factor: 6.261

7.  Preclinical enantioselective pharmacology of (R)- and (S)- ketorolac.

Authors:  D A Handley; P Cervoni; J E McCray; J R McCullough
Journal:  J Clin Pharmacol       Date:  1998-02       Impact factor: 3.126

8.  Rac1/Pak1/p38/MMP-2 Axis Regulates Angiogenesis in Ovarian Cancer.

Authors:  Vianey Gonzalez-Villasana; Enrique Fuentes-Mattei; Cristina Ivan; Heather J Dalton; Cristian Rodriguez-Aguayo; Ricardo J Fernandez-de Thomas; Burcu Aslan; Paloma Del C Monroig; Guermarie Velazquez-Torres; Rebecca A Previs; Sunila Pradeep; Nermin Kahraman; Huamin Wang; Pinar Kanlikilicer; Bulent Ozpolat; George Calin; Anil K Sood; Gabriel Lopez-Berestein
Journal:  Clin Cancer Res       Date:  2015-01-16       Impact factor: 12.531

9.  NSAIDs inhibit alpha V beta 3 integrin-mediated and Cdc42/Rac-dependent endothelial-cell spreading, migration and angiogenesis.

Authors:  O Dormond; A Foletti; C Paroz; C Rüegg
Journal:  Nat Med       Date:  2001-09       Impact factor: 53.440

10.  Statin use after colorectal cancer diagnosis and survival: a population-based cohort study.

Authors:  Chris R Cardwell; Blanaid M Hicks; Carmel Hughes; Liam J Murray
Journal:  J Clin Oncol       Date:  2014-08-04       Impact factor: 44.544

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  31 in total

Review 1.  Targeting Rac and Cdc42 GTPases in Cancer.

Authors:  María Del Mar Maldonado; Suranganie Dharmawardhane
Journal:  Cancer Res       Date:  2018-06-01       Impact factor: 12.701

2.  The R-Enantiomer of Ketorolac Delays Mammary Tumor Development in Mouse Mammary Tumor Virus-Polyoma Middle T Antigen (MMTV-PyMT) Mice.

Authors:  Amanda S Peretti; Dayna Dominguez; Martha M Grimes; Helen J Hathaway; Eric R Prossnitz; Melanie R Rivera; Angela Wandinger-Ness; Donna F Kusewitt; Laurie G Hudson
Journal:  Am J Pathol       Date:  2017-11-21       Impact factor: 4.307

Review 3.  Splicing Busts a Move: Isoform Switching Regulates Migration.

Authors:  Mithun Mitra; Ha Neul Lee; Hilary A Coller
Journal:  Trends Cell Biol       Date:  2019-12-03       Impact factor: 20.808

4.  The Rac1 splice form Rac1b favors mouse colonic mucosa regeneration and contributes to intestinal cancer progression.

Authors:  Larissa Kotelevets; Francine Walker; Godefroy Mamadou; Thérèse Lehy; Peter Jordan; Eric Chastre
Journal:  Oncogene       Date:  2018-07-09       Impact factor: 9.867

5.  Integrated mate-pair and RNA sequencing identifies novel, targetable gene fusions in peripheral T-cell lymphoma.

Authors:  Rebecca L Boddicker; Gina L Razidlo; Surendra Dasari; Yu Zeng; Guangzhen Hu; Ryan A Knudson; Patricia T Greipp; Jaime I Davila; Sarah H Johnson; Julie C Porcher; James B Smadbeck; Bruce W Eckloff; Daniel D Billadeau; Paul J Kurtin; Mark A McNiven; Brian K Link; Stephen M Ansell; James R Cerhan; Yan W Asmann; George Vasmatzis; Andrew L Feldman
Journal:  Blood       Date:  2016-06-13       Impact factor: 22.113

6.  Predicting patient response with models trained on cell lines and patient-derived xenografts by nonlinear transfer learning.

Authors:  Soufiane M C Mourragui; Marco Loog; Daniel J Vis; Kat Moore; Anna G Manjon; Mark A van de Wiel; Marcel J T Reinders; Lodewyk F A Wessels
Journal:  Proc Natl Acad Sci U S A       Date:  2021-12-07       Impact factor: 12.779

7.  CD47 Promotes Tumor Invasion and Metastasis in Non-small Cell Lung Cancer.

Authors:  Hui Zhao; Jianxin Wang; Xiaodan Kong; Encheng Li; Yuanbin Liu; Xiaohui Du; Zhijie Kang; Ying Tang; Yanbin Kuang; Zhihui Yang; Youwen Zhou; Qi Wang
Journal:  Sci Rep       Date:  2016-07-14       Impact factor: 4.379

Review 8.  Deregulation of Rho GTPases in cancer.

Authors:  Andrew P Porter; Alexandra Papaioannou; Angeliki Malliri
Journal:  Small GTPases       Date:  2016-04-22

Review 9.  Progress in the therapeutic inhibition of Cdc42 signalling.

Authors:  Natasha P Murphy; Helen R Mott; Darerca Owen
Journal:  Biochem Soc Trans       Date:  2021-06-30       Impact factor: 5.407

10.  Novel Activities of Select NSAID R-Enantiomers against Rac1 and Cdc42 GTPases.

Authors:  Tudor I Oprea; Larry A Sklar; Jacob O Agola; Yuna Guo; Melina Silberberg; Joshua Roxby; Anna Vestling; Elsa Romero; Zurab Surviladze; Cristina Murray-Krezan; Anna Waller; Oleg Ursu; Laurie G Hudson; Angela Wandinger-Ness
Journal:  PLoS One       Date:  2015-11-11       Impact factor: 3.240

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