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1. LOTUS: A single- and multitask machine learning algorithm for the prediction of cancer driver genes.

2. Scaling up data curation using deep learning: An application to literature triage in genomic variation resources.

3. Scaling up data curation using deep learning: An application to literature triage in genomic variation resources

4. Systematically benchmarking peptide-MHC binding predictors: From synthetic to naturally processed epitopes.

5. Solving the RNA design problem with reinforcement learning.

6. A machine learning approach for predicting CRISPR-Cas9 cleavage efficiencies and patterns underlying its mechanism of action.

7. DeepPep: Deep proteome inference from peptide profiles.

8. Learning from Heterogeneous Data Sources: An Application in Spatial Proteomics.

9. Improved Contact Predictions Using the Recognition of Protein Like Contact Patterns.

10. eXplainable Artificial Intelligence (XAI) for the identification of biologically relevant gene expression patterns in longitudinal human studies, insights from obesity research

11. Accurate De Novo Prediction of Protein Contact Map by Ultra-Deep Learning Model

12. Amino acid composition predicts prion activity