Biomolecules (Aug 2020)

Identification and Target-Modification of SL-BBI: A Novel Bowman–Birk Type Trypsin Inhibitor from <i>Sylvirana latouchii</i>

  • Xi Chen,
  • Dong Chen,
  • Linyuan Huang,
  • Xiaoling Chen,
  • Mei Zhou,
  • Xinping Xi,
  • Chengbang Ma,
  • Tianbao Chen,
  • Lei Wang

DOI
https://doi.org/10.3390/biom10091254
Journal volume & issue
Vol. 10, no. 9
p. 1254

Abstract

Read online

The peptides from the ranacyclin family share similar active disulphide loop with plant-derived Bowman–Birk type inhibitors, some of which have the dual activities of trypsin inhibition and antimicrobial. Herein, a novel Bowman–Birk type trypsin inhibitor of the ranacyclin family was identified from the skin secretion of broad-folded frog (Sylvirana latouchii) by molecular cloning method and named as SL-BBI. After chemical synthesis, it was proved to be a potent inhibitor of trypsin with a Ki value of 230.5 nM and showed weak antimicrobial activity against tested microorganisms. Modified analogue K-SL maintains the original inhibitory activity with a Ki value of 77.27 nM while enhancing the antimicrobial activity. After the substitution of active P1 site to phenylalanine and P2′ site to isoleucine, F-SL regenerated its inhibitory activity on chymotrypsin with a Ki value of 309.3 nM and exhibited antiproliferative effects on PC-3, MCF-7 and a series of non-small cell lung cancer cell lines without cell membrane damage. The affinity of F-SL for the β subunits in the yeast 20S proteasome showed by molecular docking simulations enriched the understanding of the possible action mode of Bowman–Birk type inhibitors. Further mechanistic studies have shown that F-SL can activate caspase 3/7 in H157 cells and induce apoptosis, which means it has the potential to become an anticancer agent.

Keywords