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Structure–Activity Relationship Study Reveals ML240 and ML241 as Potent and Selective Inhibitors of p97 ATPase
Authors:Prof. Dr. Tsui‐Fen Chou  Dr. Kelin Li  Dr. Kevin J. Frankowski  Dr. Frank J. Schoenen  Prof. Dr. Raymond J. Deshaies
Affiliation:1. Division of Biology and Howard Hughes Medical Institute, California Institute of Technology, 1200 East California Boulevard, Pasadena, CA 91125 (USA);2. Division of Medical Genetics, Department of Pediatrics, Harbor‐UCLA Medical Center and Los Angeles Biomedical Research Institute, 1124 West Carson Street, Torrance, CA 90502 (USA);3. University of Kansas Specialized Chemistry Center, 2034 Becker Drive, Structural Biology Center, West Campus, Lawrence, KS 66047 (USA)
Abstract:To discover more potent p97 inhibitors, we carried out a structure–activity relationship study of the quinazoline scaffold previously identified from our HTS campaigns. Two improved inhibitors, ML240 and ML241, inhibit p97 ATPase with IC50 values of 100 nM . Both compounds inhibited degradation of a p97‐dependent but not a p97‐independent proteasome substrate in a dual‐reporter cell line. They also impaired the endoplasmic‐reticulum‐associated degradation (ERAD) pathway. Unexpectedly, ML240 potently stimulated accumulation of LC3‐II within minutes, inhibited cancer cell growth, and rapidly mobilized the executioner caspases 3 and 7, whereas ML241 did not. The behavior of ML240 suggests that disruption of the protein homeostasis function of p97 leads to more rapid activation of apoptosis than is observed with a proteasome inhibitor. Further characterization revealed that ML240 has broad antiproliferative activity toward the NCI‐60 panel of cancer cell lines, but slightly lower activity toward normal cells. ML240 also synergizes with the proteasome inhibitor MG132 to kill multiple colon cancer cell lines. Meanwhile, both probes have low off‐target activity toward a panel of protein kinases and central nervous system targets. Our results nominate ML240 as a promising starting point for the development of a novel agent for the chemotherapy of cancer, and provide a rationale for developing pathway‐specific p97 inhibitors.
Keywords:AAA ATPase  autophagy  cancer  structure–  activity relationships  ubiquitin proteasome
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