paper-with-me

Papers

GPCR-BERT: Interpreting Sequential Design of G Protein Coupled Receptors Using Protein Language Models

2023-10-30 · Seongwon Kim, Parisa Mollaei, Akshay Antony, Rishikesh Magar, Amir Barati Farimani

With the rise of Transformers and Large Language Models (LLMs) in Chemistry and Biology, new avenues for the design and understanding of therapeutics have opened up to the scientific community. Protein sequences can be modeled as language and can take advantage of recent advances in LLMs, specifically with the abundance of our access to the protein sequence datasets. In this paper, we developed the GPCR-BERT model for understanding the sequential design of G Protein-Coupled Receptors (GPCRs). GPCRs are the target of over one-third of FDA-approved pharmaceuticals. However, there is a lack of comprehensive understanding regarding the relationship between amino acid sequence, ligand selectivity, and conformational motifs (such as NPxxY, CWxP, E/DRY). By utilizing the pre-trained protein model (Prot-Bert) and fine-tuning with prediction tasks of variations in the motifs, we were able to shed light on several relationships between residues in the binding pocket and some of the conserved motifs. To achieve this, we took advantage of attention weights, and hidden states of the model that are interpreted to extract the extent of contributions of amino acids in dictating the type of masked ones. The fine-tuned models demonstrated high accuracy in predicting hidden residues within the motifs. In addition, the analysis of embedding was performed over 3D structures to elucidate the higher-order interactions within the conformations of the receptors.

📄 PDF Abstract BibTeX arXiv:2310.19915

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

GPCR-Filter: a deep learning framework for efficient and precise GPCR modulator discovery

2026-01-27 · Jingjie Ning, Xiangzhen Shen, Li Hou, Shiyi Shen 외 arxiv

G protein-coupled receptors (GPCRs) govern diverse physiological processes and are central to modern pharmacology. Yet discovering GPCR modulators remains challenging because receptor activation often arises from complex…

Protein Language Model

Molecular Brightness analysis of GPCR oligomerization in the presence of spatial heterogeneity

2019-07-25 · Paolo Annibale, Martin J Lohse

Measuring the oligomerization of plasma membrane proteins is rife with biophysical and biomedical implications. This is particularly true for GPCRs, a large family of proteins representing the targets of over one third o…

Automated discovery of GPCR bioactive ligands

2019-03-28

While G-protein coupled receptors (GPCRs) constitute the largest class of membrane proteins, structures and endogenous ligands of a large portion of GPCRs remain unknown. Due to the involvement of GPCRs in various signal…

BIG-bench Machine Learning

Characterizing the Conformational States of G Protein Coupled Receptors Generated with AlphaFold

2025-02-24 · Garima Chib, Parisa Mollaei, Amir Barati Farimani

G-Protein Coupled Receptors (GPCRs) are integral to numerous physiological processes and are the target of approximately one-third of FDA-approved therapeutics. Despite their significance, only a limited subset of GPCRs …

Drug Discovery

Signaling activations through G-protein-coupled-receptor aggregations

2020-04-16 · Masaki Watabe, Hideaki Yoshimura, Satya N. V. Arjunan, Kazunari Kaizu 외

Eukaryotic cells transmit extracellular signal information to cellular interiors through the formation of a ternary complex made up of a ligand (or agonist), G-protein, and G-protein coupled receptor (GPCR). Previously f…