Abstract 4307
Background
Oncogenic activation of the receptor tyrosine kinase (RTK) RET via point mutation or genomic rearrangement has been identified in multiple cancers, including medullary and papillary thyroid cancers, and non-small cell lung cancer (NSCLC). Two multi-kinase RET inhibitors vandetanib and cabozantinib have been approved for thyroid cancer. Current investigational RET inhibitors BLU-667 and LOXO-292 have demonstrated efficacy in RET aberrant NSCLC and thyroid cancers. Multiple resistance mutations have been reported from preclinical studies, including the gatekeeper mutation V804L to cabozantinib and solvent front mutations (SFMs) G810A/S to vandetanib. Given that current TKIs often lead to resistance, TPX-0046, a next generation RET inhibitor that is structurally differentiated and potent against various mutations, especially SFMs, was designed.
Methods
A series of macrocyclic RET inhibitors were rationally designed and characterized in RET-related biological assays. TPX-0046 was further evaluated in RET-driven tumor models in vivo.
Results
TPX-0046 is a potent and selective next-generation RET/SRC inhibitor with a small and rigid macrocyclic structure that is structurally differentiated from current RET inhibitors. In enzymatic assays, TPX-0046 demonstrated low nanomolar potency against WT and many mutated RETs, as well as SRC, and is VEGFR2-sparing. TPX-0046 potently inhibited RET phosphorylation and cell proliferation in in-house engineered Ba/F3 KIF5B-RET, TT, and LC2/ad cells with IC50s of approximately 1 nM. TPX-0046 is potent against the SFM G810R in Ba/F3 cell proliferation assay with a mean IC50 of 17 nM, whereas comparable proxy molecules for BLU-667 and LOXO-292 have IC50s >500 nM. TPX-0046 demonstrated marked anti-tumor efficacy in vivo in multiple RET-driven cancer cell-derived and patient-derived xenograft tumor models.
Conclusions
TPX-0046 is a novel next generation RET/SRC inhibitor with favorable pharmaceutical properties and possesses potent in vitro and in vivo activity against diverse RET alterations, including the SFM G810R. The novel macrocyclic structure may provide opportunities to overcome treatment resistance from current RET inhibitors. TPX-0046 is currently in IND-enabling studies.
Clinical trial identification
Editorial acknowledgement
Legal entity responsible for the study
Turning Point Therapeutics, Inc.
Funding
Turning Point Therapeutics, Inc.
Disclosure
E. Rogers: Shareholder / Stockholder / Stock options, Full / Part-time employment: Turning Point Therapeutics, Inc. D. Zhai: Shareholder / Stockholder / Stock options, Full / Part-time employment: Turning Point Therapeutics, Inc. W. Deng: Shareholder / Stockholder / Stock options, Full / Part-time employment: Turning Point Therapeutics, Inc. X. Zhang: Shareholder / Stockholder / Stock options, Full / Part-time employment: Turning Point Therapeutics, Inc. D. Lee: Shareholder / Stockholder / Stock options, Full / Part-time employment: Turning Point Therapeutics, Inc. J. Ung: Shareholder / Stockholder / Stock options, Full / Part-time employment: Turning Point Therapeutics, Inc. J. Whitten: Shareholder / Stockholder / Stock options, Full / Part-time employment: Turning Point Therapeutics, Inc. H. Zhang: Shareholder / Stockholder / Stock options, Full / Part-time employment: Turning Point Therapeutics, Inc. J. Liu: Shareholder / Stockholder / Stock options, Full / Part-time employment: Turning Point Therapeutics, Inc. T. Hu: Shareholder / Stockholder / Stock options, Full / Part-time employment: Turning Point Therapeutics, Inc. H. Zhuang: Shareholder / Stockholder / Stock options, Full / Part-time employment: Turning Point Therapeutics, Inc. Y. Lu: Shareholder / Stockholder / Stock options, Full / Part-time employment: Turning Point Therapeutics, Inc. Z. Huang: Shareholder / Stockholder / Stock options, Full / Part-time employment: Turning Point Therapeutics, Inc. A. Graber: Shareholder / Stockholder / Stock options, Full / Part-time employment: Turning Point Therapeutics, Inc. Z. Zimmerman: Shareholder / Stockholder / Stock options, Full / Part-time employment: Turning Point Therapeutics, Inc. R. Xin: Shareholder / Stockholder / Stock options, Full / Part-time employment: Turning Point Therapeutics, Inc. J..J. Cui: Leadership role, Travel / Accommodation / Expenses, Shareholder / Stockholder / Stock options, Full / Part-time employment: Turning Point Therapeutics. All other authors have declared no conflicts of interest.
Resources from the same session
5939 - Matrix metalloproteinases and their tissue inhibitors genes abnormal DNA methylation in breast cancer
Presenter: Olga Simonova
Session: Poster Display session 1
Resources:
Abstract
2703 - Uveal melanoma cell lines depend on multiple signaling pathways for survival
Presenter: John Park
Session: Poster Display session 1
Resources:
Abstract
4849 - XAF1 and ZNF313 complex stimulates ER stress-induced apoptosis via direct GRP78 inhibition.
Presenter: Sungchan Jang
Session: Poster Display session 1
Resources:
Abstract
4801 - XAF1 assembles a destructive complex to induce BRCA1-mediated apoptosis via suppressing ERa and switching estrogen function
Presenter: Seung-hun Jang
Session: Poster Display session 1
Resources:
Abstract
3416 - Cancer associated fibroblasts promote cancer progression via Wnt2 secretion in colorectal cancer
Presenter: Hideaki Karasawa
Session: Poster Display session 1
Resources:
Abstract
4273 - Paired-related homeobox 1 overexpression promotes invasion and metastasis and is a prognostic factor for worse disease-free survival in patients with lung cancer
Presenter: Jung-jyh Hung
Session: Poster Display session 1
Resources:
Abstract
4241 - LncRNA-GC1 contributes to gastric cancer chemo-resistance through inhibition of miR-551b-3p and the overexpression of dysbindin
Presenter: Xin Guo
Session: Poster Display session 1
Resources:
Abstract
5388 - GLPG 1790, a new selective EPHA2 inhibitor, is active in colorectal cancer cell lines belonging to the CMS4/mesenchymal-like subtype
Presenter: Pietro Paolo Vitiello
Session: Poster Display session 1
Resources:
Abstract
5208 - Characterisation of growth hormone signal transduction in primary melanoma cell lines
Presenter: Karla Sousa
Session: Poster Display session 1
Resources:
Abstract
3156 - LAPTM5 protein can regulate TGF-β mediated MAPK and Smad signaling pathways in ovarian cancer cell
Presenter: Yan Gao
Session: Poster Display session 1
Resources:
Abstract