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    YearTitleJournalAuthorsApplication(s)
    1997Substrate DNA and cofactor regulate the activities of a multi-functional restriction-modification enzyme, Bcgl.Nucl.Acids Res.Kong, H., and Smith, C.L.
    1998Chemical display of thymine residues flipped out by DNA methyltransferases.Nucl.Acids Res.Serva, S., Weinhold, E., Roberts R.J.and Klimasauskas S.
    1998REBASE-restriction enzymes and methylases.Nucl.Acids Res.Roberts, R.J.and Macelis, D.
    1998Utilizing the C-terminal cleavage activity of a protein splicing element to purify recombinant proteins in a single chromatographic step.Nucl.Acids Res.Chong, S., Montello, G.E., Zhang, A., Cantor, E.J., Liao, W., Xu, M.-Q.and Benner, J.
    1999REBASE-restriction enzymes and methylases.Nucl.Acids Res.Roberts, R.J.and Macelis, D.
    2000A simple in vitro Tn7-based transposition system with low target site selectivity for genome and gene analysis.Nucl.Acids Res.Biery, M.C., Stewart, F.J., Stellwagen, A.E., Raleigh, E.A.and Craig, N.L.
    2000Functional analysis of putative restriction-modification system genes in the Helicobacter pylori J99 genome.Nucl.Acids Res.Kong, H., Lin, L.F., Porter, N., Stickel, S.Byrd, D., Posfai, J.and Roberts R.J.
    2000REBASE-restriction enzymes and methylases.Nucl.Acids Res.Roberts, R.J.and Macelis, D.
    2000The efficiency of Escherichia coli selenocysteine insertion is influenced by the immediate downstream nucleotide.Nucl.Acids Res.Sandman, K.E.and Noren, C.J.
    2001AdoMet-dependent methylation, DNA methyltransferases and base flipping.Nucl.Acids Res.Cheng, X.and Roberts, R.J.