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SERS and MD simulation studies of a kinase inhibitor demonstrate the emergence of a potential drug discovery tool

  • Dhanasekaran Karthigeyan
  • , Soumik Siddhanta
  • , Annavarapu Hari Kishore
  • , Sathya S.R.R. Perumal
  • , Hans Ågren
  • , Surabhi Sudevan
  • , Akshay V. Bhat
  • , Karanam Balasubramanyam
  • , Rangappa Kanchugarakoppal Subbegowda*
  • , Tapas K. Kundu
  • , Chandrabhas Narayana
  • *Corresponding author for this work
  • Jawaharlal Nehru Centre for Advanced Scientific Research
  • University of Mysore
  • KTH Royal Institute of Technology

Research output: Contribution to journalArticlepeer-review

Abstract

We demonstrate the use of surface-enhanced Raman spectroscopy (SERS) as an excellent tool for identifying the binding site of small molecules on a therapeutically important protein. As an example, we show the specific binding of the common antihypertension drug felodipine to the oncogenic Aurora A kinase protein via hydrogen bonding interactions with Tyr-212 residue to specifically inhibit its activity. Based on SERS studies, molecular docking, molecular dynamics simulation, biochemical assays, and point mutation-based validation, we demonstrate the surface-binding mode of this molecule in two similar hydrophobic pockets in the Aurora A kinase. These binding pockets comprise the same unique hydrophobic patches that may aid in distinguishing human Aurora A versus human Aurora B kinase in vivo. The application of SERS to identify the specific interactions between small molecules and therapeutically important proteins by differentiating competitive and noncompetitive inhibition demonstrates its ability as a complementary technique. We also present felodipine as a specific inhibitor for oncogenic Aurora A kinase. Felodipine retards the rate of tumor progression in a xenografted nude mice model. This study reveals a potential surface pocket that may be useful for developing small molecules by selectively targeting the Aurora family kinases.

Original languageEnglish
Pages (from-to)10416-10421
Number of pages6
JournalProceedings of the National Academy of Sciences of the United States of America
Volume111
Issue number29
DOIs
StatePublished - 22 Jul 2014
Externally publishedYes

Keywords

  • Ligand binding
  • Structure-activity relationship
  • Vibrational spectroscopy

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