Literature DB >> 23129805

Fendiline inhibits K-Ras plasma membrane localization and blocks K-Ras signal transmission.

Dharini van der Hoeven1, Kwang-jin Cho, Xiaoping Ma, Sravanthi Chigurupati, Robert G Parton, John F Hancock.   

Abstract

Ras proteins regulate signaling pathways important for cell growth, differentiation, and survival. Oncogenic mutant Ras proteins are commonly expressed in human tumors, with mutations of the K-Ras isoform being most prevalent. To be active, K-Ras must undergo posttranslational processing and associate with the plasma membrane. We therefore devised a high-content screening assay to search for inhibitors of K-Ras plasma membrane association. Using this assay, we identified fendiline, an L-type calcium channel blocker, as a specific inhibitor of K-Ras plasma membrane targeting with no detectable effect on the localization of H- and N-Ras. Other classes of L-type calcium channel blockers did not mislocalize K-Ras, suggesting a mechanism that is unrelated to calcium channel blockade. Fendiline did not inhibit K-Ras posttranslational processing but significantly reduced nanoclustering of K-Ras and redistributed K-Ras from the plasma membrane to the endoplasmic reticulum (ER), Golgi apparatus, endosomes, and cytosol. Fendiline significantly inhibited signaling downstream of constitutively active K-Ras and endogenous K-Ras signaling in cells transformed by oncogenic H-Ras. Consistent with these effects, fendiline blocked the proliferation of pancreatic, colon, lung, and endometrial cancer cell lines expressing oncogenic mutant K-Ras. Taken together, these results suggest that inhibitors of K-Ras plasma membrane localization may have utility as novel K-Ras-specific anticancer therapeutics.

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Year:  2012        PMID: 23129805      PMCID: PMC3554123          DOI: 10.1128/MCB.00884-12

Source DB:  PubMed          Journal:  Mol Cell Biol        ISSN: 0270-7306            Impact factor:   4.272


  74 in total

1.  Endomembrane trafficking of ras: the CAAX motif targets proteins to the ER and Golgi.

Authors:  E Choy; V K Chiu; J Silletti; M Feoktistov; T Morimoto; D Michaelson; I E Ivanov; M R Philips
Journal:  Cell       Date:  1999-07-09       Impact factor: 41.582

2.  H-ras, K-ras, and inner plasma membrane raft proteins operate in nanoclusters with differential dependence on the actin cytoskeleton.

Authors:  Sarah J Plowman; Cornelia Muncke; Robert G Parton; John F Hancock
Journal:  Proc Natl Acad Sci U S A       Date:  2005-10-13       Impact factor: 11.205

Review 3.  Ras plasma membrane signalling platforms.

Authors:  John F Hancock; Robert G Parton
Journal:  Biochem J       Date:  2005-07-01       Impact factor: 3.857

4.  Lately, it occurs to me what a long, strange trip it's been for the farnesyltransferase inhibitors.

Authors:  Eric K Rowinsky
Journal:  J Clin Oncol       Date:  2006-06-12       Impact factor: 44.544

5.  Receptor activation alters inner surface potential during phagocytosis.

Authors:  Tony Yeung; Mauricio Terebiznik; Liming Yu; John Silvius; Wasif M Abidi; Mark Philips; Tim Levine; Andras Kapus; Sergio Grinstein
Journal:  Science       Date:  2006-07-21       Impact factor: 47.728

6.  Open state block by fendiline of L-type Ca++ channels in ventricular myocytes from rat heart.

Authors:  H Nawrath; G Klein; J Rupp; J W Wegener; A Shainberg
Journal:  J Pharmacol Exp Ther       Date:  1998-05       Impact factor: 4.030

7.  Electron microscopic imaging of Ras signaling domains.

Authors:  John F Hancock; Ian A Prior
Journal:  Methods       Date:  2005-10       Impact factor: 3.608

8.  Plasma membrane localization of Ras requires class C Vps proteins and functional mitochondria in Saccharomyces cerevisiae.

Authors:  Geng Wang; Robert J Deschenes
Journal:  Mol Cell Biol       Date:  2006-04       Impact factor: 4.272

9.  Oncogenic Ha-Ras-dependent mitogen-activated protein kinase activity requires signaling through the epidermal growth factor receptor.

Authors:  M Hamilton; A Wolfman
Journal:  J Biol Chem       Date:  1998-10-23       Impact factor: 5.157

10.  PKC regulates a farnesyl-electrostatic switch on K-Ras that promotes its association with Bcl-XL on mitochondria and induces apoptosis.

Authors:  Trever G Bivona; Steven E Quatela; Brian O Bodemann; Ian M Ahearn; Michael J Soskis; Adam Mor; John Miura; Heidi H Wiener; Latasha Wright; Shahryar G Saba; Duke Yim; Adam Fein; Ignacio Pérez de Castro; Chi Li; Craig B Thompson; Adrienne D Cox; Mark R Philips
Journal:  Mol Cell       Date:  2006-02-17       Impact factor: 17.970

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  51 in total

Review 1.  Targeting RAS Membrane Association: Back to the Future for Anti-RAS Drug Discovery?

Authors:  Adrienne D Cox; Channing J Der; Mark R Philips
Journal:  Clin Cancer Res       Date:  2015-04-15       Impact factor: 12.531

2.  Dual Farnesyl and Geranylgeranyl Transferase Inhibitor Thwarts Mutant KRAS-Driven Patient-Derived Pancreatic Tumors.

Authors:  Aslamuzzaman Kazi; Shengyan Xiang; Hua Yang; Liwei Chen; Perry Kennedy; Muhammad Ayaz; Steven Fletcher; Christopher Cummings; Harshani R Lawrence; Francisca Beato; Ya'an Kang; Michael P Kim; Andrea Delitto; Patrick W Underwood; Jason B Fleming; Jose G Trevino; Andrew D Hamilton; Said M Sebti
Journal:  Clin Cancer Res       Date:  2019-06-21       Impact factor: 12.531

3.  Lipid-Sorting Specificity Encoded in K-Ras Membrane Anchor Regulates Signal Output.

Authors:  Yong Zhou; Priyanka Prakash; Hong Liang; Kwang-Jin Cho; Alemayehu A Gorfe; John F Hancock
Journal:  Cell       Date:  2016-12-29       Impact factor: 41.582

4.  Ras Variant Biology and Contributions to Human Disease.

Authors:  Ian Prior
Journal:  Methods Mol Biol       Date:  2021

5.  Activation of protein phosphatase 2A tumor suppressor as potential treatment of pancreatic cancer.

Authors:  Wenwen Chien; Qiao-Yang Sun; Kian Leong Lee; Ling-Wen Ding; Peer Wuensche; Lucia A Torres-Fernandez; Siew Zhuan Tan; Itay Tokatly; Norazean Zaiden; Lorenz Poellinger; Seiichi Mori; Henry Yang; Jeffrey W Tyner; H Phillip Koeffler
Journal:  Mol Oncol       Date:  2015-01-15       Impact factor: 6.603

Review 6.  Deciphering lipid codes: K-Ras as a paradigm.

Authors:  Yong Zhou; John F Hancock
Journal:  Traffic       Date:  2017-12-10       Impact factor: 6.215

7.  AMPK and Endothelial Nitric Oxide Synthase Signaling Regulates K-Ras Plasma Membrane Interactions via Cyclic GMP-Dependent Protein Kinase 2.

Authors:  Kwang-Jin Cho; Darren E Casteel; Priyanka Prakash; Lingxiao Tan; Dharini van der Hoeven; Angela A Salim; Choel Kim; Robert J Capon; Ernest Lacey; Shane R Cunha; Alemayehu A Gorfe; John F Hancock
Journal:  Mol Cell Biol       Date:  2016-11-28       Impact factor: 4.272

8.  Combination of MEK Inhibitor and the JAK2-STAT3 Pathway Inhibition for the Therapy of Colon Cancer.

Authors:  Jianying Jin; Qunyi Guo; Jingjing Xie; Dan Jin; Yanan Zhu
Journal:  Pathol Oncol Res       Date:  2019-01-31       Impact factor: 3.201

9.  Inhibition of Acid Sphingomyelinase Depletes Cellular Phosphatidylserine and Mislocalizes K-Ras from the Plasma Membrane.

Authors:  Kwang-Jin Cho; Dharini van der Hoeven; Yong Zhou; Masashi Maekawa; Xiaoping Ma; Wei Chen; Gregory D Fairn; John F Hancock
Journal:  Mol Cell Biol       Date:  2015-11-16       Impact factor: 4.272

10.  Signal integration by lipid-mediated spatial cross talk between Ras nanoclusters.

Authors:  Yong Zhou; Hong Liang; Travis Rodkey; Nicholas Ariotti; Robert G Parton; John F Hancock
Journal:  Mol Cell Biol       Date:  2013-12-23       Impact factor: 4.272

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