DNA translocation by type III restriction enzymes: a comparison of current models of their operation derived from ensemble and single-molecule measurements

Much insight into the interactions of DNA and enzymes has been obtained using a number of single-molecule techniques. However, recent results generated using two of these techniques-atomic force microscopy (AFM) and magnetic tweezers (MT)-have produced apparently contradictory results when applied t...

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Veröffentlicht in:Nucleic acids research 2011-06, Vol.39 (11), p.4525-4531
Hauptverfasser: Dryden, David T. F., Edwardson, J. M., Henderson, Robert M.
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Edwardson, J. M.
Henderson, Robert M.
description Much insight into the interactions of DNA and enzymes has been obtained using a number of single-molecule techniques. However, recent results generated using two of these techniques-atomic force microscopy (AFM) and magnetic tweezers (MT)-have produced apparently contradictory results when applied to the action of the ATP-dependent type III restriction endonucleases on DNA. The AFM images show extensive looping of the DNA brought about by the existence of multiple DNA binding sites on each enzyme and enzyme dimerisation. The MT experiments show no evidence for looping being a requirement for DNA cleavage, but instead support a diffusive sliding of the enzyme on the DNA until an enzyme-enzyme collision occurs, leading to cleavage. Not only do these two methods appear to disagree, but also the models derived from them have difficulty explaining some ensemble biochemical results on DNA cleavage. In this 'Survey and Summary', we describe several different models put forward for the action of type III restriction enzymes and their inadequacies. We also attempt to reconcile the different models and indicate areas for further experimentation to elucidate the mechanism of these enzymes.
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subjects Deoxyribonucleases, Type III Site-Specific - metabolism
DNA - chemistry
DNA - metabolism
Microscopy, Atomic Force
Models, Biological
Protein Transport
Survey and Summary
title DNA translocation by type III restriction enzymes: a comparison of current models of their operation derived from ensemble and single-molecule measurements
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