collaborators

5 papers

q-bio.QM2025

CAP: Commutative Algebra Prediction of Protein-Nucleic Acid Binding Affinities

Mushal Zia, Faisal Suwayyid, Yuta Hozumi +3

An accurate prediction of protein-nucleic acid binding affinity is vital for deciphering genomic processes, yet existing approaches often struggle in reconciling high accuracy with…

q-bio.QM2025

Commutative algebra neural network reveals genetic origins of diseases

JunJie Wee, Faisal Suwayyid, Mushal Zia +3

Genetic mutations can disrupt protein structure, stability, and solubility, contributing to a wide range of diseases. Existing predictive models often lack interpretability and fai…

q-bio.QM2025

CAKR: Commutative algebra k-mer representations for genomics

Faisal Suwayyid, Yuta Hozumi, Hongsong Feng +3

Despite the availability of various sequence analysis models, comparative genomic analysis remains a challenge in genomics, genetics, and phylogenetics. Commutative algebra, a fund…

q-bio.BM2025

CAML: Commutative algebra machine learning -- a case study on protein-ligand binding affinity prediction

Hongsong Feng, Faisal Suwayyid, Mushal Zia +4

Recently, Suwayyid and Wei have introduced commutative algebra as an emerging paradigm for machine learning and data science. In this work, we integrate commutative algebra machine…

q-bio.GN2024

Revealing the Shape of Genome Space via K-mer Topology

Yuta Hozumi, Guo-Wei Wei

Despite decades of effort, understanding the shape of genome space in biology remains a challenge due to the similarity, variability, diversity, and plasticity of evolutionary rela…