Nucleic Acids Research · 2013 · 18 citations · 47 references
Protein AssemblyGeneticsMolecular BiologyMolecular GeneticsFlexible TetherProtein FoldingMolecular AnchorMulti-protein AssemblyGiy-yig Nuclease DomainDna SequencingOligonucleotideDna ReplicationBiomolecular InteractionI-bmoi Dna-binding DomainStructural BiologyNick DnaI-bmoi FunctionsNatural SciencesGenetic EngineeringSystems BiologyMedicineGenome Editing
The GIY-YIG nuclease domain is found within protein scaffolds that participate in diverse cellular pathways and contains a single active site that hydrolyzes DNA by a one-metal ion mechanism. GIY-YIG homing endonucleases (GIY-HEs) are two-domain proteins with N-terminal GIY-YIG nuclease domains connected to C-terminal DNA-binding and they are thought to function as monomers. Using I-BmoI as a model GIY-HE, we test mechanisms by which the single active site is used to generate a double-strand break. We show that I-BmoI is partially disordered in the absence of substrate, and that the GIY-YIG domain alone has weak affinity for DNA. Significantly, we show that I-BmoI functions as a monomer at all steps of the reaction pathway and does not transiently dimerize or use sequential transesterification reactions to cleave substrate. Our results are consistent with the I-BmoI DNA-binding domain acting as a molecular anchor to tether the GIY-YIG domain to substrate, permitting rotation of the GIY-YIG domain to sequentially nick each DNA strand. These data highlight the mechanistic differences between monomeric GIY-HEs and dimeric or tetrameric GIY-YIG restriction enzymes, and they have implications for the use of the GIY-YIG domain in genome-editing applications.
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Nuclease activity of 1,10-phenanthroline-copper ion
David S. Sigman · Accounts of Chemical Research · 1986 · 606 citations
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<i>Fok</i> I dimerization is required for DNA cleavage
Jurate Bitinaite, David A. Wah, Aneel K. Aggarwal et al. · Proceedings of the National Academy of Sciences · 1998 · 486 citations · Full text