most citedStress-induced rearrangements of cellular networks: consequences for protection and drug design

86 citations · 248 across the 6 of their papers we have counts for

collaborators

6 papers

q-bio.MN200780 cited

Chaperones as integrators of cellular networks: Changes of cellular integrity in stress and diseases

Robin Palotai, Mate S. Szalay, Peter Csermely

Cellular networks undergo rearrangements during stress and diseases. In un-stressed state the yeast protein-protein interaction network (interactome) is highly compact, and the cen…

q-bio.BM20071 cited

Network analysis of protein dynamics

Csaba Bode, Istvan A. Kovacs, Mate S. Szalay +3

The network paradigm is increasingly used to describe the topology and dynamics of complex systems. Here we review the results of the topological analysis of protein structures as…

q-bio.MN200714 cited

How to design multi-target drugs: Target search options in cellular networks

Tamas Korcsmaros, Mate S. Szalay, Csaba Bode +2

Despite improved rational drug design and a remarkable progress in genomic, proteomic and high-throughput screening methods, the number of novel, single-target drugs fell much behi…

q-bio.MN200786 cited

Stress-induced rearrangements of cellular networks: consequences for protection and drug design

Mate S. Szalay, Istvan A. Kovacs, Tamas Korcsmaros +2

The complexity of the cells can be described and understood by a number of networks such as protein-protein interaction, cytoskeletal, organelle, signalling, gene transcription and…

q-bio.MN2007

Molecular chaperones: The modular evolution of cellular networks

Tamas Korcsmaros, Istvan A. Kovacs, Mate S. Szalay +1

Molecular chaperones play a prominent role in signaling and transcriptional regulatory networks of the cell. Recent advances uncovered that chaperones act as genetic buffers stabil…

q-bio.BM200467 cited

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

Istvan A. Kovacs, Mate S. Szalay, Peter Csermely

Water molecules and molecular chaperones efficiently help the protein folding process. Here we describe their action in the context of the energy and topological networks of protei…