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Start Over You searched for: Topic database and informatics methods Remove constraint Topic: database and informatics methods Journal plos computational biology Remove constraint Journal: plos computational biology Publisher public library of science Remove constraint Publisher: public library of science
216 results

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1. Ten simple rules for collaboratively writing a multi-authored paper.

2. Details in the evaluation of circular RNA detection tools: Reply to Chen and Chuang.

3. Generation of Binary Tree-Child phylogenetic networks.

4. A quick guide for using Microsoft OneNote as an electronic laboratory notebook.

5. Ten Simple Rules for a Bioinformatics Journal Club.

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

7. Per-sample immunoglobulin germline inference from B cell receptor deep sequencing data.

8. LMTRDA: Using logistic model tree to predict MiRNA-disease associations by fusing multi-source information of sequences and similarities.

9. Predicting the mechanism and rate of H-NS binding to AT-rich DNA.

10. Global analysis of N6-methyladenosine functions and its disease association using deep learning and network-based methods.

11. Ten quick tips for sharing open genomic data.

12. SFPEL-LPI: Sequence-based feature projection ensemble learning for predicting LncRNA-protein interactions.

13. Predicting B cell receptor substitution profiles using public repertoire data.

14. SARNAclust: Semi-automatic detection of RNA protein binding motifs from immunoprecipitation data.

15. MUMmer4: A fast and versatile genome alignment system.

16. PCSF: An R-package for network-based interpretation of high-throughput data.

17. ESPRIT-Forest: Parallel clustering of massive amplicon sequence data in subquadratic time.

18. Genome composition and phylogeny of microbes predict their co-occurrence in the environment.

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

20. A Graph-Centric Approach for Metagenome-Guided Peptide and Protein Identification in Metaproteomics.

21. Text Mining Genotype-Phenotype Relationships from Biomedical Literature for Database Curation and Precision Medicine.

22. Computational Thinking in Life Science Education.

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

24. Eleven quick tips for finding research data.

25. Generation of Binary Tree-Child phylogenetic networks

26. Per-sample immunoglobulin germline inference from B cell receptor deep sequencing data

27. A Graph-Centric Approach for Metagenome-Guided Peptide and Protein Identification in Metaproteomics

28. A scale-free analysis of the HIV-1 genome demonstrates multiple conserved regions of structural and functional importance.

29. Bioinformatics in Jordan: Status, challenges, and future directions.

30. Learning the structure of the world: The adaptive nature of state-space and action representations in multi-stage decision-making.

31. CNEr: A toolkit for exploring extreme noncoding conservation.

32. Integrating Hi-C links with assembly graphs for chromosome-scale assembly.

33. The impact of DNA methylation on the cancer proteome.

34. Where did you come from, where did you go: Refining metagenomic analysis tools for horizontal gene transfer characterisation.

35. With an eye on uncertainty: Modelling pupillary responses to environmental volatility.

36. DART-ID increases single-cell proteome coverage.

37. Problem-based learning in clinical bioinformatics education: Does it help to create communities of practice?

38. From trainees to trainers to instructors: Sustainably building a national capacity in bioinformatics training.

39. Drosophila melanogaster grooming possesses syntax with distinct rules at different temporal scales.

40. Pathogenicity and functional impact of non-frameshifting insertion/deletion variation in the human genome.

41. DeepConv-DTI: Prediction of drug-target interactions via deep learning with convolution on protein sequences.

42. Fostering bioinformatics education through skill development of professors: Big Genomic Data Skills Training for Professors.

44. Conformational coupling by trans-phosphorylation in calcium calmodulin dependent kinase II.

45. Establishing a computational biology flipped classroom.

46. Noise-precision tradeoff in predicting combinations of mutations and drugs.

47. Ten simple rules for carrying out and writing meta-analyses.

48. Ten quick tips for using a Raspberry Pi.

49. Finding driver mutations in cancer: Elucidating the role of background mutational processes.

50. The intrinsic dimension of protein sequence evolution.