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  1. hu.MAP3.0: atlas of human protein complexes by integration of >25,000 proteomic experiments
  2. hu.MAP3.0: Atlas of human protein complexes by integration of > 25,000 proteomic experiments
  3. Cellular control of protein levels: A systems biology perspective
  4. Higher‐order modular regulation of the human proteome
  5. Mass spectrometry‐based high‐throughput proteomics and its role in biomedical studies and systems biology
  6. An open invitation to the Understudied Proteins Initiative
  7. Understudied proteins: opportunities and challenges for functional proteomics
  8. Mapping the invisible chromatin transactions of prophase chromosome remodeling
  9. Low Cell Number Proteomic Analysis Using In-Cell Protease Digests Reveals a Robust Signature for Cell Cycle State Classification
  10. Mapping the invisible chromatin transactions of prophase chromosome remodelling
  11. Proteome dynamics at broken replication forks reveal a distinct ATM-directed repair response suppressing DNA double-strand break ubiquitination
  12. Co-regulation map of the human proteome enables identification of protein functions
  13. The human proteome co-regulation map reveals functional relationships between proteins
  14. treeClust improves protein co-regulation analysis due to robust selectivity for close linear relationships
  15. Epigenetic Variability Confounds Transcriptome but Not Proteome Profiling for Coexpression-based Gene Function Prediction
  16. Pervasive coexpression of spatially proximal genes is buffered at the protein level
  17. Nano Random Forests to mine protein complexes and their relationships in quantitative proteomics data
  18. Compositional Dynamics: Defining the Fuzzy Cell
  19. Nano Random Forests to mine protein complexes and their relationships in quantitative proteomics data
  20. Multiclassifier combinatorial proteomics of organelle shadows at the example of mitochondria in chromatin data
  21. Chromatin enrichment for proteomics
  22. Nascent chromatin capture proteomics determines chromatin dynamics during DNA replication and identifies unknown fork components
  23. Proteomics of a fuzzy organelle: interphase chromatin
  24. A macrodomain-containing histone rearranges chromatin upon sensing PARP1 activation
  25. Histone macroH2A isoforms predict the risk of lung cancer recurrence
  26. Modular paths to ‘decoding’ and ‘wiping’ histone lysine methylation
  27. Splicing regulates NAD metabolite binding to histone macroH2A
  28. The macro domain is an ADP-ribose binding module