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Merck
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  • Preclinical Efficacy of Covalent-Allosteric AKT Inhibitor Borussertib in Combination with Trametinib in KRAS-Mutant Pancreatic and Colorectal Cancer.

Preclinical Efficacy of Covalent-Allosteric AKT Inhibitor Borussertib in Combination with Trametinib in KRAS-Mutant Pancreatic and Colorectal Cancer.

Cancer research (2019-03-13)
Jörn Weisner, Ina Landel, Christoph Reintjes, Niklas Uhlenbrock, Marija Trajkovic-Arsic, Niklas Dienstbier, Julia Hardick, Swetlana Ladigan, Marius Lindemann, Steven Smith, Lena Quambusch, Rebekka Scheinpflug, Laura Depta, Rajesh Gontla, Anke Unger, Heiko Müller, Matthias Baumann, Carsten Schultz-Fademrecht, Georgia Günther, Abdelouahid Maghnouj, Matthias P Müller, Michael Pohl, Christian Teschendorf, Heiner Wolters, Richard Viebahn, Andrea Tannapfel, Waldemar Uhl, Jan G Hengstler, Stephan A Hahn, Jens T Siveke, Daniel Rauh
摘要

Aberrations within the PI3K/AKT signaling axis are frequently observed in numerous cancer types, highlighting the relevance of these pathways in cancer physiology and pathology. However, therapeutic interventions employing AKT inhibitors often suffer from limitations associated with target selectivity, efficacy, or dose-limiting effects. Here we present the first crystal structure of autoinhibited AKT1 in complex with the covalent-allosteric inhibitor borussertib, providing critical insights into the structural basis of AKT1 inhibition by this unique class of compounds. Comprehensive biological and preclinical evaluation of borussertib in cancer-related model systems demonstrated a strong antiproliferative activity in cancer cell lines harboring genetic alterations within the PTEN, PI3K, and RAS signaling pathways. Furthermore, borussertib displayed antitumor activity in combination with the MEK inhibitor trametinib in patient-derived xenograft models of mutant KRAS pancreatic and colon cancer. SIGNIFICANCE: Borussertib, a first-in-class covalent-allosteric AKT inhibitor, displays antitumor activity in combination with the MEK inhibitor trametinib in patient-derived xenograft models and provides a starting point for further pharmacokinetic/dynamic optimization.

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单克隆抗 β-肌动蛋白抗体 小鼠抗, clone AC-15, ascites fluid