Literature DB >> 25263688

Thoughts on the current assessment of Polo-like kinase inhibitor drug discovery.

Klaus Strebhardt1, Sven Becker, Yves Matthess.   

Abstract

The Polo-like kinase 1 (Plk1) plays a key role in regulating a broad spectrum of critical cell cycle events. Plk1 is a marker of cellular proliferation and has prognostic potential in different types of human tumors. In a series of preclinical studies, Plk1 has been validated as a cancer target. This prompted many pharmaceutical companies to develop small-molecule inhibitors targeting the classical ATP-binding site of Plk1 for anticancer drug development. Recently, FDA has granted a Breakthrough Therapy designation to the Plk inhibitor BI 6727 (volasertib), which provided a survival benefit for patients suffering from acute myeloid leukemia. Remarkably, a new generation of Plk1 inhibitors that target the second druggable domain of Plk1, the Polo-box domain, is currently being tested preclinically. Since various ATP-competitive compounds of Plk1 inhibit also the activities of Plk2 and Plk3, which act as tumor suppressors, the roles of closely related Plk-family members in cancer cells need to be considered carefully. In this article, the authors highlight recent insights into the biology of Plks in cancer cells and discuss the progress in the development of small-molecule Plk1 inhibitors. The authors believe that the greatest therapeutic benefit might come through leukemic cells that are in direct contact with the inhibitor in the blood stream. The identification of biomarkers and studies that document Plk activities in treated patients would also be beneficial to better understand the role of Plk inhibition in tumor development and anticancer therapy.

Entities:  

Keywords:  cell cycle; drug discovery; kinase inhibitors; polo-like kinase

Mesh:

Substances:

Year:  2014        PMID: 25263688     DOI: 10.1517/17460441.2015.962510

Source DB:  PubMed          Journal:  Expert Opin Drug Discov        ISSN: 1746-0441            Impact factor:   6.098


  12 in total

Review 1.  Recent Advances and New Strategies in Targeting Plk1 for Anticancer Therapy.

Authors:  Kyung S Lee; Terrence R Burke; Jung-Eun Park; Jeong K Bang; Eunhye Lee
Journal:  Trends Pharmacol Sci       Date:  2015-10-17       Impact factor: 14.819

2.  Plk1 Phosphorylation of Mre11 Antagonizes the DNA Damage Response.

Authors:  Zhiguo Li; Jie Li; Yifan Kong; Shan Yan; Nihal Ahmad; Xiaoqi Liu
Journal:  Cancer Res       Date:  2017-05-16       Impact factor: 12.701

3.  Polo-like kinase 1 (Plk1) overexpression enhances ionizing radiation-induced cancer formation in mice.

Authors:  Zhiguo Li; Jinghui Liu; Jie Li; Yifan Kong; George Sandusky; Xi Rao; Yunlong Liu; Jun Wan; Xiaoqi Liu
Journal:  J Biol Chem       Date:  2017-09-12       Impact factor: 5.157

4.  Structure-Bioactivity Relationship for Benzimidazole Thiophene Inhibitors of Polo-Like Kinase 1 (PLK1), a Potential Drug Target in Schistosoma mansoni.

Authors:  Thavy Long; R Jeffrey Neitz; Rachel Beasley; Chakrapani Kalyanaraman; Brian M Suzuki; Matthew P Jacobson; Colette Dissous; James H McKerrow; David H Drewry; William J Zuercher; Rahul Singh; Conor R Caffrey
Journal:  PLoS Negl Trop Dis       Date:  2016-01-11

5.  Linear Regression QSAR Models for Polo-Like Kinase-1 Inhibitors.

Authors:  Pablo R Duchowicz
Journal:  Cells       Date:  2018-02-14       Impact factor: 6.600

Review 6.  Dysregulations in the PI3K pathway and targeted therapies for head and neck squamous cell carcinoma.

Authors:  Yi Cai; Sonam Dodhia; Gloria H Su
Journal:  Oncotarget       Date:  2017-03-28

7.  PLK1 (polo like kinase 1) inhibits MTOR complex 1 and promotes autophagy.

Authors:  Stefanie Ruf; Alexander Martin Heberle; Miriam Langelaar-Makkinje; Sara Gelino; Deepti Wilkinson; Carolin Gerbeth; Jennifer Jasmin Schwarz; Birgit Holzwarth; Bettina Warscheid; Chris Meisinger; Marcel A T M van Vugt; Ralf Baumeister; Malene Hansen; Kathrin Thedieck
Journal:  Autophagy       Date:  2017-01-19       Impact factor: 16.016

8.  Identification of a novel Polo-like kinase 1 inhibitor that specifically blocks the functions of Polo-Box domain.

Authors:  Yunyu Chen; Jing Zhang; Dongsheng Li; Jiandong Jiang; Yanchang Wang; Shuyi Si
Journal:  Oncotarget       Date:  2017-01-03

9.  Genome co-amplification upregulates a mitotic gene network activity that predicts outcome and response to mitotic protein inhibitors in breast cancer.

Authors:  Zhi Hu; Jian-Hua Mao; Christina Curtis; Ge Huang; Shenda Gu; Laura Heiser; Marc E Lenburg; James E Korkola; Nora Bayani; Shamith Samarajiwa; Jose A Seoane; Mark A Dane; Amanda Esch; Heidi S Feiler; Nicholas J Wang; Mary Ann Hardwicke; Sylvie Laquerre; Jeff Jackson; Kenneth W Wood; Barbara Weber; Paul T Spellman; Samuel Aparicio; Richard Wooster; Carlos Caldas; Joe W Gray
Journal:  Breast Cancer Res       Date:  2016-07-01       Impact factor: 6.466

10.  Polo-like kinase 3 and phosphoT273 caspase-8 are associated with improved local tumor control and survival in patients with anal carcinoma treated with concomitant chemoradiotherapy.

Authors:  Franz Rödel; Daniel Martin; Christina Helmke; Panagiotis Balermpas; Emmanouil Fokas; Ulrike Wieland; Margret Rave-Fränk; Julia Kitz; Yves Matthess; Monika Raab; Klaus Strebhardt; Claus Rödel
Journal:  Oncotarget       Date:  2016-08-16
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