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Chemical Communications (Cambridge, England)|March 27, 2009
Efficient control of group I intron ribozyme catalysis by DNA constraintsElena Zelin, Scott K SilvermanBiochemistry|March 1, 2006
Adenosine is inherently favored as the branch-site RNA nucleotide in a structural context that resembles natural RNA splicingElena Zelin, Yangming Wang, Scott K SilvermanAngewandte Chemie (International Ed. in English)|July 30, 2010
DNA as a versatile chemical component for catalysis, encoding, and stereocontrolScott K SilvermanAccounts of Chemical Research|July 4, 2009
Deoxyribozymes: selection design and serendipity in the development of DNA catalystsScott K SilvermanMolecular Biosystems|January 12, 2007
Control of macromolecular structure and function using covalently attached double-stranded DNA constraintsScott K SilvermanAccounts of Chemical Research|May 6, 2015
Pursuing DNA catalysts for protein modificationScott K SilvermanChemical Communications (Cambridge, England)|July 26, 2008
Catalytic DNA (deoxyribozymes) for synthetic applications-current abilities and future prospectsScott K SilvermanRNA (New York, N.Y.)|March 22, 2003
Rube Goldberg goes (ribo)nuclear? Molecular switches and sensors made from RNAScott K SilvermanTrends in Biochemical Sciences|May 30, 2016
Catalytic DNA: Scope, Applications, and Biochemistry of DeoxyribozymesScott K SilvermanPageof 10