User:Nathan Harris/Tus: Difference between revisions

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=='''References'''==
=='''References'''==
Mulcair, M. D., Schaeffer P. M., Oakley, A. J., Cross, H. F., Neylon, C., Hill, M. H & Dixon, N. E.  (2006) A Molecular Mousetrap Determines Polarity of Termination of DNA replication in E. coli.
Anderson, P., Griffith, A., Duggin, I. and Wake, R.  (2000) Functional specificity of the replication fork-arrest complexes of Bacillus subtilis and Escherichia coli: significant specificity for Tus-Ter functioning in E.coli.  Molecular Microbiology, 36 (6): 1327-1335.
 
Bastia, D., Zzaman, S., Krings, G., Saxena, M., Peng, X. and Greenberg, M.  (2008) Replication termination mechanism as revealed by Tus-mediated polar arrest of a sliding helicase.  Proceedings of the National Academy of Science, USA, 105 (93): 12831-12836.
 
Henderson, T., Niles, A., Valjavec-Gratian, M. and Hill, T.  (2001) Site-directed mutagenesis and phylogenetic comparisons of Escherichia coli Tus protein: DNA-protein interactions alone cannot account for Tus activity.  Molecular Genetics and Genomics, 265 (6): 941-953.
 
Kamada, K., Horiuchi, T., Ohsumi, K., Shimamoto, N. and Morikawa, K.  (1996) Structure of a replication-terminator protein complexed with DNA.  Nature 383 (6681): 598-603.
 
Kaplab, D. L. and Bastia, D.  (2009) Mechanisms of polar arrest of replication fork.  Molecular biology, 72 (2): 279-285.
 
Mulcair, M. D., Schaeffer, P. M., Oakley, A. J., Cross, H. F., Neylon, C., Hill, T. M. and Dixon, N .E.  (2006) A molecular Mousetrap Determines Polarity of Termination of DNA Replication in E. coli. Cell 125: 1309-1319.
 
Mulugu, S., Potnis, A., Shamsuzzaman, T. J., Alexander, K. and Bastia, D.  (2001) Mechanism of termination of DNA replication of Escherichia coli involves helicase-contrahelicase interaction.  Proceedings of the National Academy of Science, USA, 98 (17): 9569-9574.
 
Neylon, C., Kralicek, A. V., Hill, T.M. and Dixon, N.E. (2005) Replication Termination in Escherichia coli: Structure and Antihelicase Activity of the Tus-Ter Complex.  Microbiology and Molecular Biology, 69 (3): 501-526.