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Molecular Interaction Map of the Mammalian Cell Cycle Control and DNA Repair Systems

Molecular Biology of the Cell · 1999 · Vol. 10(8) · pp. 2703–2734
Kurt W. Kohn

Abstract

Eventually to understand the integrated function of the cell cycle regulatory network, we must organize the known interactions in the form of a diagram, map, and/or database. A diagram convention was designed capable of unambiguous representation of networks containing multiprotein complexes, protein modifications, and enzymes that are substrates of other enzymes. To facilitate linkage to a database, each molecular species is symbolically represented only once in each diagram. Molecular species can be located on the map by means of indexed grid coordinates. Each interaction is referenced to an annotation list where pertinent information and references can be found. Parts of the network are grouped into functional subsystems. The map shows how multiprotein complexes could assemble and function at gene promoter sites and at sites of DNA damage. It also portrays the richness of connections between the p53-Mdm2 subsystem and other parts of the network.

Cancer-related Molecular PathwaysDNA Repair MechanismsMicrotubule and mitosis dynamicsBiologyComputational biologyFunction (biology)Representation (politics)DNAGenetics

MeSH terms

AnimalsCarrier ProteinsCell CycleDNA RepairDNA-Binding ProteinsHumansMammalsNuclear ProteinsProto-Oncogene ProteinsTranscription FactorsTumor Suppressor Protein p53Retinoblastoma ProteinCyclinsCell Cycle ProteinsTranscription Factor DP1
Citations
560
FWCI
10.03
field-weighted impact
References
269
Percentile
99%
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Cited by
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Journal of Cellular Biochemistry · 2005 · 337 citations
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