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Peter Csermely

Identifiers

  • name variant Peter Csermely 0.60 · backfill

Papers (41)

  1. Translocatome: a novel resource for the analysis of protein translocation between cellular organelles q-bio.MN · 2018 · author #7
  2. Network support of talented people physics.soc-ph · 2017 · author #1
  3. Plasticity-rigidity cycles: A general adaptation mechanism q-bio.MN · 2015 · author #1
  4. The wisdom of networks: A general adaptation and learning mechanism of complex systems: The network core triggers fast responses to known stimuli; innovations require the slow network periphery and are encoded by core-remodeling q-bio.MN · 2015 · author #1
  5. Targets of drugs are generally, and targets of drugs having side effects are specifically good spreaders of human interactome perturbations q-bio.MN · 2015 · author #7
  6. ComPPI, a cellular compartment-specific database for protein-protein interaction network analysis q-bio.MN · 2014 · author #7
  7. A unified data representation theory for network visualization, ordering and coarse-graining physics.soc-ph · 2014 · author #3
  8. Attractor structures of signaling networks: Consequences of different conformational barcode dynamics and their relations to network-based drug design q-bio.MN · 2014 · author #3
  9. Cancer stem cells display extremely large evolvability: alternating plastic and rigid networks as a potential mechanism q-bio.MN · 2013 · author #1
  10. Structure and dynamics of core-periphery networks physics.soc-ph · 2013 · author #1
  11. The Past, Present and Future of Cybernetics and Systems Research nlin.AO · 2013 · author #2
  12. Adaptation and learning of molecular networks as a description of cancer development at the systems-level: Potential use in anti-cancer therapies q-bio.MN · 2013 · author #6
  13. Perturbation centrality and Turbine: a novel centrality measure obtained using a versatile network dynamics tool q-bio.MN · 2013 · author #2
  14. Nodes having a major influence to break cooperation define a novel centrality measure: game centrality q-bio.MN · 2013 · author #2
  15. Structure and dynamics of molecular networks: A novel paradigm of drug discovery. A comprehensive review q-bio.MN · 2012 · author #1
  16. Potential application of network descriptions for understanding conformational changes and protonation states of ABC transporters q-bio.MN · 2012 · author #6
  17. System level mechanisms of adaptation, learning, memory formation and evolvability: the role of chaperone and other networks q-bio.MN · 2012 · author #4
  18. Rigidity and flexibility of biological networks physics.bio-ph · 2012 · author #2
  19. ModuLand plug-in for Cytoscape: determination of hierarchical layers of overlapping network modules and community centrality physics.comp-ph · 2011 · author #6
  20. Allo-network drugs: harnessing allostery in cellular networks q-bio.MN · 2011 · author #3
  21. Heat shock partially dissociates the overlapping modules of the yeast protein-protein interaction network: a systems level model of adaptation q-bio.MN · 2011 · author #2
  22. Disordered proteins and network disorder in network descriptions of protein structure, dynamics and function. Hypotheses and a comprehensive review q-bio.MN · 2011 · author #1
  23. Uniformly curated signaling pathways reveal tissue-specific cross-talks and support drug target discovery q-bio.MN · 2010 · author #10
  24. Induced fit, conformational selection and independent dynamic segments: an extended view of binding events q-bio.BM · 2010 · author #1
  25. Community landscapes: an integrative approach to determine overlapping network module hierarchy, identify key nodes and predict network dynamics physics.comp-ph · 2009 · author #4
  26. Network modules help the identification of key transport routes, signaling pathways in cellular and other networks physics.bio-ph · 2009 · author #2
  27. Network strategies to understand the aging process and help age-related drug design q-bio.MN · 2009 · author #5
  28. Ageing as a price of cooperation and complexity: Self-organization of complex systems causes the ageing of constituent networks q-bio.MN · 2008 · author #7
  29. Drug-therapy networks and the predictions of novel drug targets q-bio.MN · 2008 · author #3
  30. Creative elements: network-based predictions of active centres in proteins, cellular and social networks q-bio.MN · 2008 · author #1
  31. Perturbation waves in proteins and protein networks: Applications of percolation and game theories in signaling and drug design q-bio.MN · 2008 · author #3
  32. Chaperones as integrators of cellular networks: Changes of cellular integrity in stress and diseases q-bio.MN · 2007 · author #3
  33. Learning and innovative elements of strategy adoption rules expand cooperative network topologies q-bio.MN · 2007 · author #4
  34. Network analysis of protein dynamics q-bio.BM · 2007 · author #6
  35. How to design multi-target drugs: Target search options in cellular networks q-bio.MN · 2007 · author #5
  36. Stress-induced rearrangements of cellular networks: consequences for protection and drug design q-bio.MN · 2007 · author #5
  37. Molecular chaperones: The modular evolution of cellular networks q-bio.MN · 2007 · author #4
  38. Aging cellular networks: chaperones as major participants q-bio.MN · 2006 · author #2
  39. The efficiency of multi-target drugs: the network approach might help drug design q-bio.MN · 2004 · author #1
  40. Multiple, weak hits confuse complex systems: A transcriptional regulatory network as an example q-bio.MN · 2004 · author #2
  41. Water and molecular chaperones act as weak links of protein folding networks: energy landscape and punctuated equilibrium changes point towards a game theory of proteins q-bio.BM · 2004 · author #3

Mentions

  • 1511.01239 #1 · backfill · confidence 0.70 Peter Csermely
  • 1511.01238 #1 · backfill · confidence 0.70 Peter Csermely
  • 1504.00272 #7 · backfill · confidence 0.70 Peter Csermely
  • 1410.2494 #7 · backfill · confidence 0.70 Peter Csermely
  • 1409.8420 #3 · backfill · confidence 0.70 Peter Csermely
  • 1404.4515 #3 · backfill · confidence 0.70 Peter Csermely
  • 1312.6356 #1 · backfill · confidence 0.70 Peter Csermely
  • 1309.6928 #1 · backfill · confidence 0.70 Peter Csermely
  • 1308.6317 #2 · backfill · confidence 0.70 Peter Csermely
  • 1306.3371 #6 · backfill · confidence 0.70 Peter Csermely
  • 1305.2496 #2 · backfill · confidence 0.70 Peter Csermely
  • 1304.3796 #2 · backfill · confidence 0.70 Peter Csermely
  • 1210.0330 #1 · backfill · confidence 0.70 Peter Csermely
  • 1206.0123 #6 · backfill · confidence 0.70 Peter Csermely
  • 1206.0094 #4 · backfill · confidence 0.70 Peter Csermely
  • 1204.6389 #2 · backfill · confidence 0.70 Peter Csermely
  • 1111.3033 #6 · backfill · confidence 0.70 Peter Csermely
  • 1109.5163 #3 · backfill · confidence 0.70 Peter Csermely
  • 1105.2933 #2 · backfill · confidence 0.70 Peter Csermely
  • 1101.5865 #1 · backfill · confidence 0.70 Peter Csermely
  • 1008.4025 #10 · backfill · confidence 0.70 Peter Csermely
  • 1005.0348 #1 · backfill · confidence 0.70 Peter Csermely
  • 0912.0161 #4 · backfill · confidence 0.70 Peter Csermely
  • 0908.4524 #2 · backfill · confidence 0.70 Peter Csermely
  • 0908.4508 #5 · backfill · confidence 0.70 Peter Csermely
  • 0812.0325 #7 · backfill · confidence 0.70 Peter Csermely
  • 0807.4860 #3 · backfill · confidence 0.70 Peter Csermely
  • 0807.0308 #1 · backfill · confidence 0.70 Peter Csermely
  • 0802.2330 #3 · backfill · confidence 0.70 Peter Csermely
  • 0710.1622 #3 · backfill · confidence 0.70 Peter Csermely
  • 0708.2707 #4 · backfill · confidence 0.70 Peter Csermely

Frequent Coauthors