Literature DB >> 27699769

BAY 1125976, a selective allosteric AKT1/2 inhibitor, exhibits high efficacy on AKT signaling-dependent tumor growth in mouse models.

Oliver Politz1, Franziska Siegel1, Lars Bärfacker2, Ulf Bömer1, Andrea Hägebarth1, William J Scott3, Martin Michels2, Stuart Ince3, Roland Neuhaus1, Kirstin Meyer1, Amaury Ernesto Fernández-Montalván1, Ningshu Liu1, Franz von Nussbaum4, Dominik Mumberg1, Karl Ziegelbauer1.   

Abstract

The PI3K-AKT-mTOR signaling cascade is activated in the majority of human cancers, and its activation also plays a key role in resistance to chemo and targeted therapeutics. In particular, in both breast and prostate cancer, increased AKT pathway activity is associated with cancer progression, treatment resistance and poor disease outcome. Here, we evaluated the activity of a novel allosteric AKT1/2 inhibitor, BAY 1125976, in biochemical, cellular mechanistic, functional and in vivo efficacy studies in a variety of tumor models. In in vitro kinase activity assays, BAY 1125976 potently and selectively inhibited the activity of full-length AKT1 and AKT2 by binding into an allosteric binding pocket formed by kinase and PH domain. In accordance with this proposed allosteric binding mode, BAY 1125976 bound to inactive AKT1 and inhibited T308 phosphorylation by PDK1, while the activity of truncated AKT proteins lacking the pleckstrin homology domain was not inhibited. In vitro, BAY 1125976 inhibited cell proliferation in a broad panel of human cancer cell lines. Particularly high activity was observed in breast and prostate cancer cell lines expressing estrogen or androgen receptors. Furthermore, BAY 1125976 exhibited strong in vivo efficacy in both cell line and patient-derived xenograft models such as the KPL4 breast cancer model (PIK3CAH1074R mutant), the MCF7 and HBCx-2 breast cancer models and the AKTE17K mutant driven prostate cancer (LAPC-4) and anal cancer (AXF 984) models. These findings indicate that BAY 1125976 is a potent and highly selective allosteric AKT1/2 inhibitor that targets tumors displaying PI3K/AKT/mTOR pathway activation, providing opportunities for the clinical development of new, effective treatments.
© 2016 UICC.

Entities:  

Keywords:  AKT; breast cancer; kinase inhibitor; patient-derived models; prostate cancer

Mesh:

Substances:

Year:  2016        PMID: 27699769     DOI: 10.1002/ijc.30457

Source DB:  PubMed          Journal:  Int J Cancer        ISSN: 0020-7136            Impact factor:   7.396


  17 in total

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9.  The c-Myc/AKT1/TBX3 Axis Is Important to Target in the Treatment of Embryonal Rhabdomyosarcoma.

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Journal:  Cancers (Basel)       Date:  2020-02-21       Impact factor: 6.639

10.  Phase 1 Dose Escalation Study of the Allosteric AKT Inhibitor BAY 1125976 in Advanced Solid Cancer-Lack of Association between Activating AKT Mutation and AKT Inhibition-Derived Efficacy.

Authors:  Andreas Schneeweiss; Dagmar Hess; Markus Joerger; Andrea Varga; Stacy Moulder; Apostolia M Tsimberidou; Cynthia Ma; Sara A Hurvitz; Christine Rentzsch; Marion Rudolph; Silke Thiele; Oliver Boix; Gary Wilkinson; Eleni Lagkadinou; Matthias Ocker
Journal:  Cancers (Basel)       Date:  2019-12-10       Impact factor: 6.639

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