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72 results on '"NeXtProt"'

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1. Advances in the Chromosome-Centric Human Proteome Project: looking to the future.

2. Probing the Missing Human Proteome: A Computational Perspective.

3. Structural Bioinformatics Inspection of neXtProt PE5 Proteins in the Human Proteome.

4. What will neXtProt help us achieve in 2020 and beyond?

5. Progress Identifying and Analyzing the Human Proteome: 2021 Metrics from the HUPO Human Proteome Project

6. Further Theoretical Considerations for Next-Generation Proteomics

7. Theoretical considerations for next-generation proteomics

8. iHPDM: In Silico Human Proteome Digestion Map with Proteolytic Peptide Analysis and Graphical Visualizations

9. Гены «стахановцы» 18 хромосомы человека, отсутствующие белки и не охарактеризованные белки в ткани печени и клеточной линии HepG2

10. Open-pFind Verified Four Missing Proteins from Multi-Tissues

11. Human Chr18: 'Stakhanovite' Genes, Missing and uPE1 Proteins in Liver Tissue and HepG2 Cells

12. Bioinformatic Prediction of Gene Ontology Terms of Uncharacterized Proteins from Chromosome 11

13. Research on the Human Proteome Reaches a Major Milestone:90% of Predicted Human Proteins Now Credibly Detected, According to the HUPO Human Proteome Project

14. Is It Possible to Find Needles in a Haystack? Meta-Analysis of 1000+ MS/MS Files Provided by the Russian Proteomic Consortium for Mining Missing Proteins

15. Extending Comet for global amino acid variant and post-translational modification analysis using the PSI extended FASTA format (PEFF)

16. Multiproteases Combined with High-pH Reverse-Phase Separation Strategy Verified Fourteen Missing Proteins in Human Testis Tissue

17. Progress on Identifying and Characterizing the Human Proteome: 2018 Metrics from the HUPO Human Proteome Project

18. Annotation of functional impact of voltage-gated sodium channel mutations

19. The neXtProt knowledgebase on human proteins: 2017 update

20. Open-pFind Enhances the Identification of Missing Proteins from Human Testis Tissue

21. Utilization of the Proteome Data Deposited in SRMAtlas for Validating the Existence of the Human Missing Proteins in GPM

22. Blinded Testing of Function Annotation for uPE1 Proteins by I-TASSER/COFACTOR Pipeline Using the 2018-2019 Additions to neXtProt and the CAFA3 Challenge

23. Worming into the Uncharacterized Human Proteome

24. Why are they missing? : Bioinformatics characterization of missing human proteins

25. Integrated Proteomic Pipeline Using Multiple Search Engines for a Proteogenomic Study with a Controlled Protein False Discovery Rate

26. Towards a functional definition of the mitochondrial human proteome

27. Informatics View on the Challenges of Identifying Missing Proteins from Shotgun Proteomics

28. Appraisal of the Missing Proteins Based on the mRNAs Bound to Ribosomes

29. Chromosome 17 Missing Proteins: Recent Progress and Future Directions as Part of the neXt-MP50 Challenge

30. Structure and Protein Interaction-Based Gene Ontology Annotations Reveal Likely Functions of Uncharacterized Proteins on Human Chromosome 17

31. Identification of Missing Proteins in Human Olfactory Epithelial Tissue by Liquid Chromatography-Tandem Mass Spectrometry

32. Integrative annotation and knowledge discovery of kinase post-translational modifications and cancer-associated mutations through federated protein ontologies and resources

33. A new bioinformatics tool to help assess the significance of BRCA1 variants

34. Launching the C-HPP neXt-CP50 pilot project for functional characterization of identified proteins with no known function

35. Update of the functional mitochondrial human proteome network

36. Exploring the Uncharacterized Human Proteome Using neXtProt

37. Finding Missing Proteins from the Epigenetically Manipulated Human Cell with Stringent Quality Criteria

38. Special Enrichment Strategies Greatly Increase the Efficiency of Missing Proteins Identification from Regular Proteome Samples

39. Proteogenomic Analysis to Identify Missing Proteins from Haploid Cell Lines

40. Progress on the HUPO Draft Human Proteome: 2017 Metrics of the Human Proteome Project

41. Identification and Validation of Human Missing Proteins and Peptides in Public Proteome Databases: Data Mining Strategy

42. Systematic Proteogenomic Approach To Exploring a Novel Function for NHERF1 in Human Reproductive Disorder: Lessons for Exploring Missing Proteins

43. Human Prestin: A Candidate PE1 Protein Lacking Stringent Mass Spectrometric Evidence?

44. Accelerating the search for the missing proteins in the human proteome

45. Advances in the chromosome-centric human proteome project: looking to the future

46. Toward the Standardization of Mitochondrial Proteomics: The Italian Mitochondrial Human Proteome Project Initiative

47. Proteogenomics: concepts, applications and computational strategies

48. Mass-spectrometry-based draft of the human proteome

49. Identifying the missing proteins in human proteome by biological language model

50. Missing Protein Landscape of Human Chromosomes 2 and 14: Progress and Current Status

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