pLM-BLAST: distant homology detection based on direct comparison of sequence representations from protein language models

Author:

Kaminski Kamil12,Ludwiczak Jan1ORCID,Pawlicki Kamil1,Alva Vikram3ORCID,Dunin-Horkawicz Stanislaw13ORCID

Affiliation:

1. Institute of Evolutionary Biology, Faculty of Biology, Biological and Chemical Research Centre, University of Warsaw , Warsaw 02-089, Poland

2. Laboratory of Structural Bioinformatics, Centre of New Technologies, University of Warsaw , Warsaw 02-097, Poland

3. Department of Protein Evolution, Max Planck Institute for Biology Tübingen , Tübingen 72076, Germany

Abstract

Abstract Motivation The detection of homology through sequence comparison is a typical first step in the study of protein function and evolution. In this work, we explore the applicability of protein language models to this task. Results We introduce pLM-BLAST, a tool inspired by BLAST, that detects distant homology by comparing single-sequence representations (embeddings) derived from a protein language model, ProtT5. Our benchmarks reveal that pLM-BLAST maintains a level of accuracy on par with HHsearch for both highly similar sequences (with >50% identity) and markedly divergent sequences (with <30% identity), while being significantly faster. Additionally, pLM-BLAST stands out among other embedding-based tools due to its ability to compute local alignments. We show that these local alignments, produced by pLM-BLAST, often connect highly divergent proteins, thereby highlighting its potential to uncover previously undiscovered homologous relationships and improve protein annotation. Availability and implementation pLM-BLAST is accessible via the MPI Bioinformatics Toolkit as a web server for searching precomputed databases (https://toolkit.tuebingen.mpg.de/tools/plmblast). It is also available as a standalone tool for building custom databases and performing batch searches (https://github.com/labstructbioinf/pLM-BLAST).

Funder

Foundation for Polish Science

European Regional Development Fund

Max Planck Society

Publisher

Oxford University Press (OUP)

Subject

Computational Mathematics,Computational Theory and Mathematics,Computer Science Applications,Molecular Biology,Biochemistry,Statistics and Probability

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