Peter Csermely
Affiliations: | Semmelweis Egyetem, Hungary |
Area:
Molecular BiologyGoogle:
"Peter Csermely"
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Publications
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Ágg B, Császár A, Szalay-Bekő M, et al. (2019) The EntOptLayout Cytoscape plug-in for the efficient visualization of major protein complexes in protein-protein interaction and signalling networks. Bioinformatics (Oxford, England) |
Mendik P, Dobronyi L, Hári F, et al. (2018) Translocatome: a novel resource for the analysis of protein translocation between cellular organelles. Nucleic Acids Research |
Barna J, Csermely P, Vellai T. (2018) Roles of heat shock factor 1 beyond the heat shock response. Cellular and Molecular Life Sciences : Cmls |
Csermely P. (2017) 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. Bioessays : News and Reviews in Molecular, Cellular and Developmental Biology |
Modos D, Brooks J, Fazekas D, et al. (2016) Identification of critical paralog groups with indispensable roles in the regulation of signaling flow. Scientific Reports. 6: 38588 |
Perez-Lopez ÁR, Szalay KZ, Türei D, et al. (2015) Targets of drugs are generally, and targets of drugs having side effects are specifically good spreaders of human interactome perturbations. Scientific Reports. 5: 10182 |
Türei D, Földvári-Nagy L, Fazekas D, et al. (2015) Autophagy Regulatory Network - a systems-level bioinformatics resource for studying the mechanism and regulation of autophagy. Autophagy. 11: 155-65 |
Veres DV, Gyurkó DM, Thaler B, et al. (2015) ComPPI: a cellular compartment-specific database for protein-protein interaction network analysis. Nucleic Acids Research. 43: D485-93 |
Szalay KZ, Nussinov R, Csermely P. (2014) Attractor Structures of Signaling Networks: Consequences of Different Conformational Barcode Dynamics and Their Relations to Network-Based Drug Design. Molecular Informatics. 33: 463-8 |
Gyurko DM, Soti C, Stetak A, et al. (2014) System level mechanisms of adaptation, learning, memory formation and evolvability: the role of chaperone and other networks. Current Protein & Peptide Science. 15: 171-88 |