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0
|
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Prediction of eukaryotic cellular complexity in Asgard archaea using structural modelling.
(nature.com)
|
Kostlbacher S
…
Ettema TJG
Nature Microbiology
2026-03-01
|
#phylogenomics
#pangenome
#proteomics
#evolution
|
|
0
|
|
Subset binding enables detection of multimodal patient subgroup patterns and drug target discovery in idiopathic pulmonary fibrosis.
(academic.oup.com)
|
Natsume-Kitatani Y
…
Ueda N
Briefings in Bioinformatics
2026-03-01
|
#precision medicine
#proteomics
#clustering
#pulmonary fibrosis
#biomarker
|
|
0
|
|
The good, the bad, and the ugly: opportunities, challenges, and pitfalls in spatial proteomics modeling.
(academic.oup.com)
|
Haque SY
…
Azim R
Briefings in Bioinformatics
2026-03-01
|
#proteomics
#imaging
#modeling
|
|
0
|
|
Large language model agents for biological intelligence across genomics, proteomics, spatial biology, and biomedicine.
(academic.oup.com)
|
Dip SA
…
Zhang L
Briefings in Bioinformatics
2026-03-01
|
#bioinformatics
#proteomics
#genomics
#modeling
|
|
0
|
|
The splice of life: how alternative splicing shapes regulatory and phenotypic evolution.
(link.springer.com)
|
Hunter CE
…
Xing Y
The EMBO Journal
2026-03-01
|
#transcriptomics
#splicing
#evolution
#proteomics
|
|
0
|
|
JMJD2 regulates enhancer-promoter interactions via biomolecular condensate formation.
(nature.com)
|
Jiang S
…
Ding J
Nature Genetics
2026-03-01
|
#transcriptomics
#chromatin
#condensates
#proteomics
#reprogramming
|
|
0
|
|
Master of Metals2: a graph neural network based architecture for the prediction of zinc binding sites in protein structures.
(academic.oup.com)
|
Laveglia V
…
Rosato A
Briefings in Bioinformatics
2026-03-01
|
#modeling
#proteomics
#machine learning
#binding sites
|
|
0
|
|
PLM-effector: unleashing the potential of protein language models for bacterial secreted protein prediction.
(academic.oup.com)
|
Zheng D
…
Yang J
Briefings in Bioinformatics
2026-03-01
|
#virulence
#secretion
#prediction
#proteomics
#machine learning
|
|
0
|
|
The transition from monocyte to tissue-resident macrophage requires DHPS.
(nature.com)
|
Carrizo GE
…
Pearce EL
Nature
2026-03-01
|
#macrophage
#differentiation
#proteomics
#translation
#immunity
|
|
0
|
|
Systematic analyses of lipid mobilization by human lipid transfer proteins.
(nature.com)
|
Titeca K
…
Gavin AC
Nature
2026-03-01
|
#lipidomics
#proteomics
#metabolism
#structural
|
|
0
|
|
Proteomic analysis across Healthy-NAT-Tumor tissues uncovers clinically relevant biological events in esophageal squamous cell carcinoma.
(academic.oup.com)
|
Liu W
…
Li EM
Briefings in Bioinformatics
2026-03-01
|
#proteomics
#cancer
#prognosis
#immunity
#metabolism
|
|
0
|
|
DECODE: deep learning-based common deconvolution framework for various omics data.
(nature.com)
|
Zhao T
…
Wang Y
Nature Methods
2026-03-01
|
#multi-omics
#deconvolution
#transcriptomics
#proteomics
#metabolomics
|
|
0
|
|
Cellular quiescence uncouples the proteome from the transcriptome in neural stem cells.
(link.springer.com)
|
Rossi A
…
Sousa-Nunes R
The EMBO Journal
2026-03-01
|
#stem cell
#proteomics
#transcriptomics
#quiescence
#translation
|