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0
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Computational nanobody design using graph neural networks and Metropolis Monte Carlo sampling.
(academic.oup.com)
|
Wang L
…
Huang Q
Briefings in Bioinformatics
2026-03-01
|
#modeling
#protein
#therapeutics
#binding
|
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0
|
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CryoSIP: unleashing protein high-resolution Cryo-EM via semantic-instance collaborative picking.
(academic.oup.com)
|
Deng Y
…
Zou Q
Briefings in Bioinformatics
2026-03-01
|
#cryo-em
#protein
#reconstruction
#image analysis
|
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0
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Bacterial immune activation via supramolecular assembly with phage triggers.
(nature.com)
|
Zhang T
…
Laub MT
Nature
2026-03-01
|
#virulence
#immunity
#protein
#phage
|
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0
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Structure-aware Multi-task Collaborative Learning: a multi-task collaborative learning framework for peptide-protein interaction prediction based on structure-aware protein language models.
(academic.oup.com)
|
He S
…
Zhang J
Briefings in Bioinformatics
2026-03-01
|
#modeling
#prediction
#protein
#machine learning
#binding
|
|
0
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A pore-forming antiphage defence is activated by oligomeric phage proteins.
(nature.com)
|
Patel PH
…
Maxwell KL
Nature
2026-03-01
|
#virulence
#immunity
#protein
#phage
|
|
0
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Hybrid deep learning with protein language models and dual-path architecture for predicting IDP functions.
(academic.oup.com)
|
Liang J
…
Peng Z
Briefings in Bioinformatics
2026-03-01
|
#prediction
#protein
#deep learning
#binding
#language model
|
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0
|
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KANPM-DTA: improving drug-target affinity prediction with Kolmogorov-Arnold networks and pretrained models.
(academic.oup.com)
|
Rakib MDYK
…
Ren S
Briefings in Bioinformatics
2026-03-01
|
#modeling
#protein
#machine learning
#drug discovery
|