4.6 Article

Structural and Functional Analysis of the Symmetrical Type I Restriction Endonuclease R.EcoR124INT

Journal

PLOS ONE
Volume 7, Issue 4, Pages -

Publisher

PUBLIC LIBRARY SCIENCE
DOI: 10.1371/journal.pone.0035263

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Funding

  1. Wellcome Trust [080304/Z/06/Z]
  2. Wellcome Trust [080304/Z/06/Z] Funding Source: Wellcome Trust

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Type I restriction-modification (RM) systems are comprised of two multi-subunit enzymes, the methyltransferase (similar to 160 kDa), responsible for methylation of DNA, and the restriction endonuclease (similar to 400 kDa), responsible for DNA cleavage. Both enzymes share a number of subunits. An engineered RM system, EcoR124I(NT), based on the N-terminal domain of the specificity subunit of EcoR124I was constructed that recognises the symmetrical sequence GAAN(7)TTC and is active as a methyltransferase. Here, we investigate the restriction endonuclease activity of R.EcoR124I(NT) in vitro and the subunit assembly of the multi-subunit enzyme. Finally, using small-angle neutron scattering and selective deuteration, we present a low-resolution structural model of the endonuclease and locate the motor subunits within the multi-subunit enzyme. We show that the covalent linkage between the two target recognition domains of the specificity subunit is not required for subunit assembly or enzyme activity, and discuss the implications for the evolution of Type I enzymes.

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