4.6 Article

Systematic characterization of pan-cancer mutation clusters

期刊

MOLECULAR SYSTEMS BIOLOGY
卷 14, 期 3, 页码 -

出版社

WILEY
DOI: 10.15252/msb.20177974

关键词

cancer genomics; hotspot analysis; interface mutations; protein complexes

资金

  1. ERC Advanced Grant Syngene [ERC-2011-ADG_20110310]
  2. ERC grant Proteomics v3.0 [ERC-2008-AdG_20080422]
  3. ERC Proteomics 4D [670821]
  4. Swiss National Science Foundation [3100A0-688 107679]
  5. Cluster of Excellence CellNetworks fellowship [EXC 81]
  6. SystemsX.ch fellowship [TPdF 2013/135]
  7. SNSF SystemsX.ch fellowship [TPdF 2013/134]

向作者/读者索取更多资源

Cancer genome sequencing has shown that driver genes can often be distinguished not only by the elevated mutation frequency but also by specific nucleotide positions that accumulate changes at a high rate. However, properties associated with a residue's potential to drive tumorigenesis when mutated have not yet been systematically investigated. Here, using a novel methodological approach, we identify and characterize a compendium of 180 hotspot residues within 160 human proteins which occur with a significant frequency and are likely to have functionally relevant impact. We find that such mutations (i) are more prominent in proteins that can exist in the on and off state, (ii) reflect the identity of a tumor of origin, and (iii) often localize within interfaces which mediate interactions with other proteins or ligands. Following, we further examine structural data for human protein complexes and identify a number of additional protein interfaces that accumulate cancer mutations at a high rate. Jointly, these analyses suggest that disruption and dysregulation of protein interactions can be instrumental in switching functions of cancer proteins and activating downstream changes.

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