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Nucleic Acids Research|July 22, 1998
Specificity and fidelity of strand joining by Chlorella virus DNA ligaseV Sriskanda, S ShumanNucleic Acids Research|February 28, 1998
Chlorella virus DNA ligase: nick recognition and mutational analysisV Sriskanda, S ShumanNucleic Acids Research|January 29, 2002
A second NAD(+)-dependent DNA ligase (LigB) in Escherichia coliV Sriskanda, S ShumanNucleic Acids Research|October 1, 1998
Mutational analysis of Chlorella virus DNA ligase: catalytic roles of domain I and motif VIV Sriskanda, S ShumanThe Journal of Biological Chemistry|July 19, 2001
NAD+-dependent DNA ligase encoded by a eukaryotic virusV Sriskanda, R W Moyer, S ShumanNucleic Acids Research|June 28, 2000
Characterization of an ATP-dependent DNA ligase from the thermophilic archaeon Methanobacterium thermoautotrophicumV Sriskanda, Z Kelman, J Hurwitz, et al.Nucleic Acids Research|September 25, 1999
Mutational analysis of Escherichia coli DNA ligase identifies amino acids required for nick-ligation in vitro and for in vivo complementation of the growth of yeast cells deleted for CDC9 and LIG4V Sriskanda, B Schwer, C K Ho, et al.Molecular Cell|December 7, 2000
Crystal structure of eukaryotic DNA ligase-adenylate illuminates the mechanism of nick sensing and strand joiningM Odell, V Sriskanda, S Shuman, et al.The Journal of Biological Chemistry|May 23, 1998
The guanylyltransferase domain of mammalian mRNA capping enzyme binds to the phosphorylated carboxyl-terminal domain of RNA polymerase IIC K Ho, V Sriskanda, S McCracken, et al.Pageof 34