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Naturally Occurring Mutations in the MPS1 Gene Predispose Cells to Kinase Inhibitor Drug Resistance.

Authors :
Gurden, Mark D.
Westwood, Isaac M.
Faisal, Amir
Naud, Sébastien
Kwai-Ming J. Cheung
McAndrew, Craig
Wood, Amy
Schmitt, Jessica
Boxall, Kathy
Mak, Grace
Workman, Paul
Burke, Rosemary
Hoelder, Swen
Blagg, Julian
Van Montfort, Rob L. M.
Linardopoulos, Spiros
Source :
Cancer Research. 8/15/2015, Vol. 75 Issue 16, p3340-3354. 15p.
Publication Year :
2015

Abstract

Acquired resistance to therapy is perhaps the greatest challenge to effective clinical management of cancer. With several inhibitors of the mitotic checkpoint kinase MPS1 in preclinical development, we sought to investigate how resistance against these inhibitors may arise so that mitigation or bypass strategies could be addressed as early as possible. Toward this end, we modeled acquired resistance to the MPS1 inhibitors AZ3146, NMS-P715, and CCT251455, identifying five point mutations in the kinase domain of MPS1 that confer resistance against multiple inhibitors. Structural studies showed how the MPS1 mutants conferred resistance by causing steric hindrance to inhibitor binding. Notably, we show that these mutations occur in nontreated cancer cell lines and primary tumor specimens, and that they also preexist in normal lymphoblast and breast tissues. In a parallel piece of work, we also show that the EGFR p.T790M mutation, the most common mutation conferring resistance to the EGFR inhibitor gefitinib, also preexists in cancer cells and normal tissue. Our results therefore suggest that mutations conferring resistance to targeted therapy occur naturally in normal and malignant cells and these mutations do not arise as a result of the increased mutagenic plasticity of cancer cells. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00085472
Volume :
75
Issue :
16
Database :
Academic Search Index
Journal :
Cancer Research
Publication Type :
Academic Journal
Accession number :
108974113
Full Text :
https://doi.org/10.1158/0008-5472.CAN-14-3272