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Molecular and Cellular Biology|March 1, 1990
A highly specific phosphatase from Saccharomyces cerevisiae implicated in tRNA splicingS M McCraith, E M PhizickyThe Journal of Biological Chemistry|June 25, 1991
An enzyme from Saccharomyces cerevisiae uses NAD+ to transfer the splice junction 2'-phosphate from ligated tRNA to an acceptor moleculeS M McCraith, E M PhizickyThe Journal of Biological Chemistry|May 16, 1997
A 2'-phosphotransferase implicated in tRNA splicing is essential in Saccharomyces cerevisiaeG M Culver, S M McCraith, S A Consaul, et al.Science (New York, N.Y.)|November 5, 1999
A biochemical genomics approach for identifying genes by the activity of their productsM R Martzen, S M McCraith, S L Spinelli, et al.Science (New York, N.Y.)|July 9, 1993
An NAD derivative produced during transfer RNA splicing: ADP-ribose 1"-2" cyclic phosphateG M Culver, S M McCraith, M Zillmann, et al.Microbiological Reviews|March 1, 1995
Protein-protein interactions: methods for detection and analysisE M Phizicky, S FieldsTrends in Biochemical Sciences|January 1, 1993
Pre-tRNA splicing: variation on a theme or exception to the rule?E M Phizicky, C L GreerCell|July 1, 1981
Induction of SOS functions: regulation of proteolytic activity of E. coli RecA protein by interaction with DNA and nucleoside triphosphateE M Phizicky, J W RobertsCurrent Opinion in Chemical Biology|February 13, 2001
Genomic analysis of biochemical functionE J Grayhack, E M PhizickyThe Journal of Biological Chemistry|February 25, 1986
Saccharomyces cerevisiae tRNA ligase. Purification of the protein and isolation of the structural geneE M Phizicky, R C Schwartz, J AbelsonPageof 3