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Lalith Perera

Showing results (61-70 of 104) with videos related to

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Journal of the American Chemical Society|January 6, 2009
Reaction mechanism of the epsilon subunit of E. coli DNA polymerase III: insights into active site metal coordination and catalytically significant residuesG Andrés Cisneros, Lalith Perera, Roel M Schaaper, et al.
Proceedings of the National Academy of Sciences of the United States of America|July 9, 2014
Molecular mechanisms for the regulation of histone mRNA stem-loop-binding protein by phosphorylationJun Zhang, Dazhi Tan, Eugene F DeRose, et al.
Biomolecules|November 25, 2023
Targeting the Structural Maturation Pathway of HIV-1 Reverse TranscriptaseThomas W Kirby, Scott A Gabel, Eugene F DeRose, et al.
The Journal of Biological Chemistry|March 22, 2014
Molecular mechanism of substrate specificity for heparan sulfate 2-O-sulfotransferaseChunhui Liu, Juzheng Sheng, Juno M Krahn, et al.
DNA Repair|March 1, 2011
Modeling of the DNA-binding site of yeast Pms1 by mass spectrometryAllison N Schorzman, Lalith Perera, Jenny M Cutalo-Patterson, et al.
Nature Communications|April 26, 2022
A structural exposé of noncanonical molecular reactivity within the protein tyrosine phosphatase WPD loopHuanchen Wang, Lalith Perera, Nikolaus Jork, et al.
Nucleic Acids Research|October 31, 2021
A post-transcriptional regulon controlled by TtpA, the single tristetraprolin family member expressed in Dictyostelium discoideumWenli Bai, Melissa L Wells, Wi S Lai, et al.
Journal of Biomolecular NMR|August 25, 2010
Conformational dependence of 13C shielding and coupling constants for methionine methyl groupsGlenn L Butterfoss, Eugene F DeRose, Scott A Gabel, et al.
Journal of the American Chemical Society|May 8, 2013
Amino acid substitution in the active site of DNA polymerase β explains the energy barrier of the nucleotidyl transfer reactionVinod K Batra, Lalith Perera, Ping Lin, et al.
Biochemistry|August 8, 2009
Structural characterization of the conformational change in calbindin-D28k upon calcium binding using differential surface modification analyzed by mass spectrometryCarey A Hobbs, Leesa J Deterding, Lalith Perera, et al.
Pageof 11

Showing results (61-70 of 104) with videos related to

Sort By:
Pageof 11
Journal of the American Chemical Society|January 6, 2009
Reaction mechanism of the epsilon subunit of E. coli DNA polymerase III: insights into active site metal coordination and catalytically significant residuesG Andrés Cisneros, Lalith Perera, Roel M Schaaper, et al.
Proceedings of the National Academy of Sciences of the United States of America|July 9, 2014
Molecular mechanisms for the regulation of histone mRNA stem-loop-binding protein by phosphorylationJun Zhang, Dazhi Tan, Eugene F DeRose, et al.
Biomolecules|November 25, 2023
Targeting the Structural Maturation Pathway of HIV-1 Reverse TranscriptaseThomas W Kirby, Scott A Gabel, Eugene F DeRose, et al.
The Journal of Biological Chemistry|March 22, 2014
Molecular mechanism of substrate specificity for heparan sulfate 2-O-sulfotransferaseChunhui Liu, Juzheng Sheng, Juno M Krahn, et al.
DNA Repair|March 1, 2011
Modeling of the DNA-binding site of yeast Pms1 by mass spectrometryAllison N Schorzman, Lalith Perera, Jenny M Cutalo-Patterson, et al.
Nature Communications|April 26, 2022
A structural exposé of noncanonical molecular reactivity within the protein tyrosine phosphatase WPD loopHuanchen Wang, Lalith Perera, Nikolaus Jork, et al.
Nucleic Acids Research|October 31, 2021
A post-transcriptional regulon controlled by TtpA, the single tristetraprolin family member expressed in Dictyostelium discoideumWenli Bai, Melissa L Wells, Wi S Lai, et al.
Journal of Biomolecular NMR|August 25, 2010
Conformational dependence of 13C shielding and coupling constants for methionine methyl groupsGlenn L Butterfoss, Eugene F DeRose, Scott A Gabel, et al.
Journal of the American Chemical Society|May 8, 2013
Amino acid substitution in the active site of DNA polymerase β explains the energy barrier of the nucleotidyl transfer reactionVinod K Batra, Lalith Perera, Ping Lin, et al.
Biochemistry|August 8, 2009
Structural characterization of the conformational change in calbindin-D28k upon calcium binding using differential surface modification analyzed by mass spectrometryCarey A Hobbs, Leesa J Deterding, Lalith Perera, et al.
Pageof 11