Structures, activity and mechanism of the Type IIS restriction endonuclease PaqCI

Author:

Kennedy Madison A1,Hosford Christopher J2,Azumaya Caleigh M1,Luyten Yvette A2,Chen Minyong2,Morgan Richard D2,Stoddard Barry L1ORCID

Affiliation:

1. Division of Basic Sciences, Fred Hutchinson Cancer Research Center , 1100 Fairview Ave. North, Seattle, WA  98109,  USA

2. New England Biolabs , 240 County Road, Ipswich , MA  01938, USA

Abstract

Abstract Type IIS restriction endonucleases contain separate DNA recognition and catalytic domains and cleave their substrates at well-defined distances outside their target sequences. They are employed in biotechnology for a variety of purposes, including the creation of gene-targeting zinc finger and TAL effector nucleases and DNA synthesis applications such as Golden Gate assembly. The most thoroughly studied Type IIS enzyme, FokI, has been shown to require multimerization and engagement with multiple DNA targets for optimal cleavage activity; however, details of how it or similar enzymes forms a DNA-bound reaction complex have not been described at atomic resolution. Here we describe biochemical analyses of DNA cleavage by the Type IIS PaqCI restriction endonuclease and a series of molecular structures in the presence and absence of multiple bound DNA targets. The enzyme displays a similar tetrameric organization of target recognition domains in the absence or presence of bound substrate, with a significant repositioning of endonuclease domains in a trapped DNA-bound complex that is poised to deliver the first of a series of double-strand breaks. PaqCI and FokI share similar structural mechanisms of DNA cleavage, but considerable differences in their domain organization and quaternary architecture, facilitating comparisons between distinct Type IIS enzymes.

Funder

New England Biolabs

National Institutes of Health

National Science Foundation

Cancer Center Support

U.S. Department of Energy

NIH

Publisher

Oxford University Press (OUP)

Subject

Genetics

Reference54 articles.

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