4.8 Article

Dynamics and consequences of DNA looping by the FokI restriction endonuclease

Journal

NUCLEIC ACIDS RESEARCH
Volume 36, Issue 6, Pages 2073-2081

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/nar/gkn051

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Funding

  1. Wellcome Trust [078794/Z/06] Funding Source: Medline

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Genetic events often require proteins to be activated by interacting with two DNA sites, trapping the intervening DNA in a loop. While much is known about looping equilibria, only a few studies have examined DNA-looping dynamics experimentally. The restriction enzymes that cut DNA after interacting with two recognition sites, such as FokI, can be used to exemplify looping reactions. The reaction pathway for FokI on a supercoiled DNA with two sites was dissected by fast kinetics to reveal, in turn: the initial binding of a protein monomer to each site; the protein-protein association to form the dimer, trapping the loop; the subsequent phosphodiester hydrolysis step. The DNA motion that juxtaposes the sites ought on the basis of Brownian dynamics to take similar to 2 ms, but loop capture by FokI took 230 ms. Hence, DNA looping by FokI is rate limited by protein association rather than DNA dynamics. The FokI endonuclease also illustrated activation by looping: it cut looped DNA 400 times faster than unlooped DNA.

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