4.8 Article

E. coli DNA replication in the absence of free β clamps

Journal

EMBO JOURNAL
Volume 30, Issue 9, Pages 1830-1840

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/emboj.2011.84

Keywords

clamp recycling; DNA replication; fluorescence microscopy; single molecule

Funding

  1. National Institutes of Health
  2. Australian Research Council

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During DNA replication, repetitive synthesis of discrete Okazaki fragments requires mechanisms that guarantee DNA polymerase, clamp, and primase proteins are present for every cycle. In Escherichia coli, this process proceeds through transfer of the lagging-strand polymerase from the beta sliding clamp left at a completed Okazaki fragment to a clamp assembled on a new RNA primer. These lagging-strand clamps are thought to be bound by the replisome from solution and loaded a new for every fragment. Here, we discuss a surprising, alternative lagging-strand synthesis mechanism: efficient replication in the absence of any clamps other than those assembled with the replisome. Using single-molecule experiments, we show that replication complexes pre-assembled on DNA support synthesis of multiple Okazaki fragments in the absence of excess beta clamps. The processivity of these replisomes, but not the number of synthesized Okazaki fragments, is dependent on the frequency of RNA-primer synthesis. These results broaden our understanding of lagging-strand synthesis and emphasize the stability of the replisome to continue synthesis without new clamps. The EMBO Journal (2011) 30, 1830-1840. doi:10.1038/emboj.2011.84; Published online 25 March 2011

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