The First Snake Venom KTS/Disintegrins-Integrin Interactions Using Bioinformatics Approaches

Molecules. 2022 Dec 31;28(1):325. doi: 10.3390/molecules28010325.

Abstract

Snake venom contains a number of active molecules that have been shown to possess high anti-tumor activities; disintegrins are an excellent example among these. Their ability to interact and bind with integrins suggests that they could be very valuable molecules for the development of new cancer therapeutic approaches. However, in the absence of a clear Lysine-Threonine-Serine (KTS) Disintegrins Integrin interaction model, the exact compound features behind it are still unknown. In this study, we investigated the structural characteristics of three KTS-disintegrins and the interaction mechanisms with the α1β1 integrin receptor using in silico bioinformatics approaches. Normal mode analysis showed that the flexibility of the KTSR motif and the C-terminal region play a key role and influence the KTS-Disintegrin-integrin interaction. Protein-protein docking also suggested that the interaction involving the KTSR motif is highly dependent on the residue following K21, S23 and R24. These findings contribute to a better understanding of the KTS-Disintegrin-Integrin structural differences and their interactions with α1β1 receptors, which could improve the selection process of the best active molecules for antitumor therapies.

Keywords: KTS-disintegrins; anti-tumor; bioinformatics; integrin; normal modes analysis; protein-protein docking.

MeSH terms

  • Amino Acid Sequence
  • Disintegrins* / chemistry
  • Integrins
  • Snake Venoms* / chemistry

Substances

  • Disintegrins
  • Snake Venoms
  • Integrins

Grants and funding

This research was totally supported by Pasteur Institute, Ministry of Health & Ministry of High Education and Scientific Research of Tunisia grant 30498/HAM000.