1. Academic Validation
  2. Development of Erasin: a chromone-based STAT3 inhibitor which induces apoptosis in Erlotinib-resistant lung cancer cells

Development of Erasin: a chromone-based STAT3 inhibitor which induces apoptosis in Erlotinib-resistant lung cancer cells

  • Sci Rep. 2017 Dec 12;7(1):17390. doi: 10.1038/s41598-017-17600-x.
Christian Lis 1 Stefan Rubner 1 Martin Roatsch 1 Angela Berg 1 Tyler Gilcrest 2 Darwin Fu 2 Elizabeth Nguyen 2 Anne-Marie Schmidt 1 Harald Krautscheid 3 Jens Meiler 2 Thorsten Berg 4
Affiliations

Affiliations

  • 1 Leipzig University, Institute of Organic Chemistry, Johannisallee 29, 04103, Leipzig, Germany.
  • 2 Vanderbilt University, Center for Structural Biology, 465 21st Ave South, BIOSCI/MRBIII, Nashville, TN, 37221, USA.
  • 3 Leipzig University, Institute of Inorganic Chemistry, Johannisallee 29, 04103, Leipzig, Germany.
  • 4 Leipzig University, Institute of Organic Chemistry, Johannisallee 29, 04103, Leipzig, Germany. [email protected].
Abstract

Inhibition of protein-protein interactions by small molecules offers tremendous opportunities for basic research and drug development. One of the fundamental challenges of this research field is the broad lack of available lead structures from nature. Here, we demonstrate that modifications of a chromone-based inhibitor of the Src homology 2 (SH2) domain of the transcription factor STAT5 confer inhibitory activity against STAT3. The binding mode of the most potent STAT3 Inhibitor Erasin was analyzed by the investigation of structure-activity relationships, which was facilitated by chemical synthesis and biochemical activity analysis, in combination with molecular docking studies. Erasin inhibits tyrosine phosphorylation of STAT3 with selectivity over STAT5 and STAT1 in cell-based assays, and increases the apoptotic rate of cultured NSCLC cells in a STAT3-dependent manner. This ability of Erasin also extends to HCC-827 cells with acquired resistance against Erlotinib, a clinically used inhibitor of the EGF receptor. Our work validates chromone-based acylhydrazones as privileged structures for antagonizing STAT SH2 domains, and demonstrates that Apoptosis can be induced in NSCLC cells with acquired Erlotinib resistance by direct inhibition of STAT3.

Figures
Products