MulinforCPI: enhancing precision of compound-protein interaction prediction through novel perspectives on multi-level information integration

  • Nguyen, Ngoc-Quang; 
  • Park, Sejeong; 
  • Gim, Mogan; 
  • Kang, Jaewoo
Citations

WEB OF SCIENCE

16
Citations

SCOPUS

16

초록

Forecasting the interaction between compounds and proteins is crucial for discovering new drugs. However, previous sequence-based studies have not utilized three-dimensional (3D) information on compounds and proteins, such as atom coordinates and distance matrices, to predict binding affinity. Furthermore, numerous widely adopted computational techniques have relied on sequences of amino acid characters for protein representations. This approach may constrain the model's ability to capture meaningful biochemical features, impeding a more comprehensive understanding of the underlying proteins. Here, we propose a two-step deep learning strategy named MulinforCPI that incorporates transfer learning techniques with multi-level resolution features to overcome these limitations. Our approach leverages 3D information from both proteins and compounds and acquires a profound understanding of the atomic-level features of proteins. Besides, our research highlights the divide between first-principle and data-driven methods, offering new research prospects for compound-protein interaction tasks. We applied the proposed method to six datasets: Davis, Metz, KIBA, CASF-2016, DUD-E and BindingDB, to evaluate the effectiveness of our approach.

키워드

compound-protein interaction; transfer learning; cross-attention; 3D geometric information; multi-level information; DOCKING; SIMILARITY
제목
MulinforCPI: enhancing precision of compound-protein interaction prediction through novel perspectives on multi-level information integration
저자
Nguyen, Ngoc-Quang; Park, Sejeong; Gim, Mogan; Kang, Jaewoo
DOI
10.1093/bib/bbad484
발행일
2023-11-22
유형
Article
저널명
Briefings in Bioinformatics
권
25
호
1