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Replication initiation and DNA topology: The twisted life of the origin

โœ Scribed by E. Rampakakis; C. Gkogkas; D. Di Paola; M. Zannis-Hadjopoulos


Publisher
John Wiley and Sons
Year
2010
Tongue
English
Weight
147 KB
Volume
110
Category
Article
ISSN
0730-2312

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โœฆ Synopsis


Abstract

Genomic propagation in both prokaryotes and eukaryotes is tightly regulated at the level of initiation, ensuring that the genome is accurately replicated and equally segregated to the daughter cells. Even though replication origins and the proteins that bind onto them (initiator proteins) have diverged throughout the course of evolution, the mechanism of initiation has been conserved, consisting of origin recognition, multiโ€protein complex assembly, helicase activation and loading of the replicative machinery. Recruitment of the multiprotein initiation complexes onto the replication origins is constrained by the dense packing of the DNA within the nucleus and unusual structures such as knots and supercoils. In this review, we focus on the DNA topological barriers that the multiโ€protein complexes have to overcome in order to access the replication origins and how the topological state of the origins changes during origin firing. Recent advances in the available methodologies to study DNA topology and their clinical significance are also discussed. J. Cell. Biochem. 110: 35โ€“43, 2010. ยฉ 2010 Wileyโ€Liss, Inc.


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