Literature DB >> 29382705

Discovery of Potent and Selective MRCK Inhibitors with Therapeutic Effect on Skin Cancer.

Mathieu Unbekandt1, Simone Belshaw2, Justin Bower2, Maeve Clarke2, Jacqueline Cordes2, Diane Crighton2, Daniel R Croft2, Martin J Drysdale2, Mathew J Garnett3, Kathryn Gill2, Christopher Gray2, David A Greenhalgh4, James A M Hall3, Jennifer Konczal2, Sergio Lilla5, Duncan McArthur2, Patricia McConnell2, Laura McDonald2, Lynn McGarry6, Heather McKinnon2, Carol McMenemy4, Mokdad Mezna2, Nicolas A Morrice5, June Munro1, Gregory Naylor1, Nicola Rath1, Alexander W Schüttelkopf2, Mairi Sime2, Michael F Olson7,8.   

Abstract

The myotonic dystrophy-related Cdc42-binding kinases MRCKα and MRCKβ contribute to the regulation of actin-myosin cytoskeleton organization and dynamics, acting in concert with the Rho-associated coiled-coil kinases ROCK1 and ROCK2. The absence of highly potent and selective MRCK inhibitors has resulted in relatively little knowledge of the potential roles of these kinases in cancer. Here, we report the discovery of the azaindole compounds BDP8900 and BDP9066 as potent and selective MRCK inhibitors that reduce substrate phosphorylation, leading to morphologic changes in cancer cells along with inhibition of their motility and invasive character. In over 750 human cancer cell lines tested, BDP8900 and BDP9066 displayed consistent antiproliferative effects with greatest activity in hematologic cancer cells. Mass spectrometry identified MRCKα S1003 as an autophosphorylation site, enabling development of a phosphorylation-sensitive antibody tool to report on MRCKα status in tumor specimens. In a two-stage chemical carcinogenesis model of murine squamous cell carcinoma, topical treatments reduced MRCKα S1003 autophosphorylation and skin papilloma outgrowth. In parallel work, we validated a phospho-selective antibody with the capability to monitor drug pharmacodynamics. Taken together, our findings establish an important oncogenic role for MRCK in cancer, and they offer an initial preclinical proof of concept for MRCK inhibition as a valid therapeutic strategy.Significance: The development of selective small-molecule inhibitors of the Cdc42-binding MRCK kinases reveals their essential roles in cancer cell viability, migration, and invasive character. Cancer Res; 78(8); 2096-114. ©2018 AACR. ©2018 American Association for Cancer Research.

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Year:  2018        PMID: 29382705      PMCID: PMC5901721          DOI: 10.1158/0008-5472.CAN-17-2870

Source DB:  PubMed          Journal:  Cancer Res        ISSN: 0008-5472            Impact factor:   12.701


  54 in total

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Authors:  Alexander W Schüttelkopf; Daan M F van Aalten
Journal:  Acta Crystallogr D Biol Crystallogr       Date:  2004-07-21

Review 2.  A perspective on cancer cell metastasis.

Authors:  Christine L Chaffer; Robert A Weinberg
Journal:  Science       Date:  2011-03-25       Impact factor: 47.728

Review 3.  Targeting Cdc42 in cancer.

Authors:  Luis E Arias-Romero; Jonathan Chernoff
Journal:  Expert Opin Ther Targets       Date:  2013-08-19       Impact factor: 6.902

4.  Features and development of Coot.

Authors:  P Emsley; B Lohkamp; W G Scott; K Cowtan
Journal:  Acta Crystallogr D Biol Crystallogr       Date:  2010-03-24

5.  Fibroblast-led collective invasion of carcinoma cells with differing roles for RhoGTPases in leading and following cells.

Authors:  Cedric Gaggioli; Steven Hooper; Cristina Hidalgo-Carcedo; Robert Grosse; John F Marshall; Kevin Harrington; Erik Sahai
Journal:  Nat Cell Biol       Date:  2007-11-25       Impact factor: 28.824

6.  Fos cooperation with PTEN loss elicits keratoacanthoma not carcinoma, owing to p53/p21 WAF-induced differentiation triggered by GSK3beta inactivation and reduced AKT activity.

Authors:  Denggao Yao; Claire L Alexander; Jean A Quinn; Weng-Chyn Chan; Hong Wu; David A Greenhalgh
Journal:  J Cell Sci       Date:  2008-04-29       Impact factor: 5.285

7.  Notch1 is a p53 target gene involved in human keratinocyte tumor suppression through negative regulation of ROCK1/2 and MRCKalpha kinases.

Authors:  Karine Lefort; Anna Mandinova; Paola Ostano; Vihren Kolev; Valerie Calpini; Ingrid Kolfschoten; Vikram Devgan; Jocelyn Lieb; Wassim Raffoul; Daniel Hohl; Victor Neel; Jonathan Garlick; Giovanna Chiorino; G Paolo Dotto
Journal:  Genes Dev       Date:  2007-03-01       Impact factor: 11.361

8.  How good are my data and what is the resolution?

Authors:  Philip R Evans; Garib N Murshudov
Journal:  Acta Crystallogr D Biol Crystallogr       Date:  2013-06-13

9.  ROCK signaling promotes collagen remodeling to facilitate invasive pancreatic ductal adenocarcinoma tumor cell growth.

Authors:  Nicola Rath; Jennifer P Morton; Linda Julian; Lena Helbig; Shereen Kadir; Ewan J McGhee; Kurt I Anderson; Gabriela Kalna; Margaret Mullin; Andreia V Pinho; Ilse Rooman; Michael S Samuel; Michael F Olson
Journal:  EMBO Mol Med       Date:  2017-02       Impact factor: 12.137

10.  MolProbity: all-atom structure validation for macromolecular crystallography.

Authors:  Vincent B Chen; W Bryan Arendall; Jeffrey J Headd; Daniel A Keedy; Robert M Immormino; Gary J Kapral; Laura W Murray; Jane S Richardson; David C Richardson
Journal:  Acta Crystallogr D Biol Crystallogr       Date:  2009-12-21
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  13 in total

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Authors:  April L Risinger; Lin Du
Journal:  Nat Prod Rep       Date:  2019-11-25       Impact factor: 13.423

2.  Defective apoptotic cell contractility provokes sterile inflammation, leading to liver damage and tumour suppression.

Authors:  Linda Julian; Gregory Naylor; Grant R Wickman; Nicola Rath; Giovanni Castino; David Stevenson; Sheila Bryson; June Munro; Lynn McGarry; Margaret Mullin; Alistair Rice; Armandodel Del Río Hernández; Michael F Olson
Journal:  Elife       Date:  2021-04-19       Impact factor: 8.140

3.  Functional proteomics interrogation of the kinome identifies MRCKA as a therapeutic target in high-grade serous ovarian carcinoma.

Authors:  Alison M Kurimchak; Carlos Herrera-Montávez; Jennifer Brown; Katherine J Johnson; Valerie Sodi; Nishi Srivastava; Vikas Kumar; Safoora Deihimi; Shane O'Brien; Suraj Peri; Gina M Mantia-Smaldone; Angela Jain; Ryan M Winters; Kathy Q Cai; Jonathan Chernoff; Denise C Connolly; James S Duncan
Journal:  Sci Signal       Date:  2020-02-18       Impact factor: 8.192

Review 4.  Targeting the cytoskeleton against metastatic dissemination.

Authors:  Carmen Ruggiero; Enzo Lalli
Journal:  Cancer Metastasis Rev       Date:  2021-01-20       Impact factor: 9.264

5.  Epidermal ROCK2 induces AKT1/GSK3β/β-catenin, NFκB and dermal tenascin C; but enhanced differentiation and p53/p21 inhibit papilloma.

Authors:  Siti F Masre; Nicola Rath; Michael F Olson; David A Greenhalgh
Journal:  Carcinogenesis       Date:  2020-10-15       Impact factor: 4.944

6.  MRCKβ links Dasm1 to actin rearrangements to promote dendrite development.

Authors:  Xiao-Xiao Wang; Si Zhang; Ping-Ping Dong; Yao-Hua Li; Li Zhang; Song-Hai Shi; Zhi-Qiang Yu; She Chen
Journal:  J Biol Chem       Date:  2021-04-30       Impact factor: 5.157

7.  Identification of Kinases Responsible for p53-Dependent Autophagy.

Authors:  Stephanie L Celano; Lisette P Yco; Matthew G Kortus; Abigail R Solitro; Hakan Gunaydin; Mark Scott; Edward Spooner; Ronan C O'Hagan; Peter Fuller; Katie R Martin; Stuart D Shumway; Jeffrey P MacKeigan
Journal:  iScience       Date:  2019-04-23

Review 8.  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

Review 9.  STAT3 Contributes to Radioresistance in Cancer.

Authors:  Xuehai Wang; Xin Zhang; Chen Qiu; Ning Yang
Journal:  Front Oncol       Date:  2020-07-07       Impact factor: 6.244

10.  The CDC42 effector protein MRCKβ autophosphorylates on Threonine 1108.

Authors:  Mathieu Unbekandt; Sergio Lilla; Sara Zanivan; Michael F Olson
Journal:  Small GTPases       Date:  2019-01-22
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