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A Semi-supervised Graph Deep Neural Network for Automatic Protein Function Annotation.

, , , , and . IWBBIO (2), volume 13347 of Lecture Notes in Computer Science, page 153-166. Springer, (2022)

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GrAPFI: predicting enzymatic function of proteins from domain similarity graphs., , and . BMC Bioinform., 21 (1): 168 (2020)Exploiting Complex Protein Domain Networks for Protein Function Annotation., , and . COMPLEX NETWORKS (2), volume 813 of Studies in Computational Intelligence, page 598-610. Springer, (2018)On Graph-Based Approaches for Protein Function Annotation and Knowledge Discovery. (Approches à base de graphes pour l'annotation de la fonction des protéines et la découverte des connaissances).. University of Lorraine, Nancy, France, (2021)MetaLLM: Residue-Wise Metal Ion Prediction Using Deep Transformer Model., , , and . IWBBIO (2), volume 13920 of Lecture Notes in Computer Science, page 42-55. Springer, (2023)A Semi-supervised Graph Deep Neural Network for Automatic Protein Function Annotation., , , , and . IWBBIO (2), volume 13347 of Lecture Notes in Computer Science, page 153-166. Springer, (2022)Improving automatic GO annotation with semantic similarity., , , and . BMC Bioinform., 23-S (2): 433 (2022)Optimal Fuzzy Model Construction with Statistical Information using Genetic Algorithm, , , and . CoRR, (2012)On the design of a similarity function for sparse binary data with application on protein function annotation., , , , , , , and . Knowl. Based Syst., (2022)Graph Based Automatic Protein Function Annotation Improved by Semantic Similarity., , , and . IWBBIO, volume 12108 of Lecture Notes in Computer Science, page 261-272. Springer, (2020)Functional Annotation of Proteins using Domain Embedding based Sequence Classification., , and . KDIR, page 163-170. ScitePress, (2019)