AI Article Synopsis

  • The study focuses on the initiation of DNA replication in Escherichia coli, highlighting how the initiator protein DnaA interacts with the chromosomal origin oriC and the DNA-bending protein IHF to form a complex.
  • By combining computer simulations and biochemical assays, researchers developed near-atomic resolution models of the oriC-DnaA-IHF complex, which is divided into three subcomplexes with distinct structural features.
  • The arrangement of DnaA within these subcomplexes plays a critical role in DNA unwinding and the loading of DnaB helicases, providing insights into the dynamic nature of the initiation complex.

Article Abstract

Upon DNA replication initiation in Escherichia coli, the initiator protein DnaA forms higher-order complexes with the chromosomal origin oriC and a DNA-bending protein IHF. Although tertiary structures of DnaA and IHF have previously been elucidated, dynamic structures of oriC-DnaA-IHF complexes remain unknown. Here, combining computer simulations with biochemical assays, we obtained models at almost-atomic resolution for the central part of the oriC-DnaA-IHF complex. This complex can be divided into three subcomplexes; the left and right subcomplexes include pentameric DnaA bound in a head-to-tail manner and the middle subcomplex contains only a single DnaA. In the left and right subcomplexes, DnaA ATPases associated with various cellular activities (AAA+) domain III formed helices with specific structural differences in interdomain orientations, provoking a bend in the bound DNA. In the left subcomplex a continuous DnaA chain exists, including insertion of IHF into the DNA looping, consistent with the DNA unwinding function of the complex. The intervening spaces in those subcomplexes are crucial for DNA unwinding and loading of DnaB helicases. Taken together, this model provides a reasonable near-atomic level structural solution of the initiation complex, including the dynamic conformations and spatial arrangements of DnaA subcomplexes.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5167161PMC
http://dx.doi.org/10.1073/pnas.1609649113DOI Listing

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