Sudip S. Parikh, Ph.D.

Affiliations: 
2000 Scripps Research Institute, La Jolla, La Jolla, CA, United States 
Area:
Molecular Biology
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"Sudip Parikh"
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Parents

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John Tainer grad student 2000 Scripps Institute
 (The structural and chemical biology of DNA glycosylases for base-excision repair.)
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Publications

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Hosfield DJ, Daniels DS, Mol CD, et al. (2001) DNA damage recognition and repair pathway coordination revealed by the structural biochemistry of DNA repair enzymes. Progress in Nucleic Acid Research and Molecular Biology. 68: 315-47
Hopfner KP, Parikh SS, Tainer JA. (2000) Envisioning the fourth dimension of the genetic code: the structural biology of macromolecular recognition and conformational switching in DNA repair. Cold Spring Harbor Symposia On Quantitative Biology. 65: 113-26
Parikh SS, Putnam CD, Tainer JA. (2000) Lessons learned from structural results on uracil-DNA glycosylase. Mutation Research. 460: 183-99
Parikh SS, Walcher G, Jones GD, et al. (2000) Uracil-DNA glycosylase-DNA substrate and product structures: conformational strain promotes catalytic efficiency by coupled stereoelectronic effects. Proceedings of the National Academy of Sciences of the United States of America. 97: 5083-8
Mol CD, Parikh SS, Putnam CD, et al. (1999) DNA repair mechanisms for the recognition and removal of damaged DNA bases. Annual Review of Biophysics and Biomolecular Structure. 28: 101-28
Parikh SS, Mol CD, Hosfield DJ, et al. (1999) Envisioning the molecular choreography of DNA base excision repair. Current Opinion in Structural Biology. 9: 37-47
Guan Y, Manuel RC, Arvai AS, et al. (1998) MutY catalytic core, mutant and bound adenine structures define specificity for DNA repair enzyme superfamily. Nature Structural Biology. 5: 1058-64
Parikh SS, Mol CD, Slupphaug G, et al. (1998) Base excision repair initiation revealed by crystal structures and binding kinetics of human uracil-DNA glycosylase with DNA. The Embo Journal. 17: 5214-26
Parikh SS, Mol CD, Tainer JA. (1997) Base excision repair enzyme family portrait: integrating the structure and chemistry of an entire DNA repair pathway. Structure (London, England : 1993). 5: 1543-50
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