Eric T. Kool
Affiliations: | Stanford University, Palo Alto, CA |
Area:
chemical biologyWebsite:
http://www.stanford.edu/group/kool/kool.htmGoogle:
"Eric Kool"Mean distance: 6.75 | S | N | B | C | P |
Parents
Sign in to add mentorRonald Charles David Breslow | grad student | 1988 | Columbia | |
(RNA hydrolysis catalyzed by imidazole compounds ; Hydrophobic acceleration of reactions and mimics of thiamin-dependent enzymes) | ||||
Peter B. Dervan | post-doc | 1990 | Caltech |
Children
Sign in to add traineeKevin Ryan | grad student | 1992-1996 | Rochester |
Amy M. Diegelman | grad student | 2000 | Rochester |
Kevin M. Guckian | grad student | 2000 | Rochester |
Angele S. Maki | grad student | 2003 | Stanford |
Jianmin Gao | grad student | 2004 | Stanford |
Haibo Liu | grad student | 2004 | Stanford |
Jacob S. Lai | grad student | 2005 | Stanford |
Younjin Cho | grad student | 2006 | Stanford |
Sandra A. Helquist | grad student | 2006 | Stanford |
Gregory P. Miller | grad student | 2006 | Stanford |
Haige Lu | grad student | 2007 | Stanford |
Lucian Orbai | grad student | 2007 | Stanford |
Adam P. Silverman | grad student | 2007 | Stanford |
Andrea H. Kurtz | grad student | 2008 | Stanford |
Michael G. Mohsen | grad student | 2015-2020 | Stanford |
Michael Smietana | post-doc | 2002-2004 | Stanford |
Herman O. Sintim | post-doc | 2004-2006 | Stanford |
Larryn W. Peterson | post-doc | 2009-2011 | Stanford |
Shenliang Wang | post-doc | 2009-2012 | Stanford |
Biswarup Jash | post-doc | 2021-2022 | Stanford |
Linglan Fang | post-doc | 2020-2024 | Stanford |
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Publications
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Pandit B, Fang L, Kool ET, et al. (2024) Reversible RNA Acylation Using Bio-Orthogonal Chemistry Enables Temporal Control of CRISPR-Cas9 Nuclease Activity. Acs Chemical Biology |
Gao S, Tahara Y, Kool ET, et al. (2024) Promoter dependent RNA polymerase II bypass of the epimerizable DNA lesion, Fapy•dG and 8-Oxo-2'-deoxyguanosine. Nucleic Acids Research |
Thomas D, Palczewski M, Kuschman H, et al. (2024) Nitric oxide inhibits ten-eleven translocation DNA demethylases to regulate 5mC and 5hmC across the genome. Research Square |
Shioi R, Xiao L, Kool ET. (2023) Aqueous Activation of RNA 2'-OH for Conjugation with Amines and Thiols. Bioconjugate Chemistry |
Shioi R, Xiao L, Fang L, et al. (2023) Efficient post-synthesis incorporation and conjugation of reactive ketones in RNA 2'-acylation. Chemical Communications (Cambridge, England). 60: 232-235 |
Xiao L, Fang L, Kool ET. (2023) 2'-OH as a universal handle for studying intracellular RNAs. Cell Chemical Biology |
Fang L, Kool ET. (2023) Reactivity-based RNA profiling for analyzing transcriptome interactions of small molecules in human cells. Star Protocols. 4: 102670 |
Xiao L, Fang L, Kool ET. (2023) RNA Infrastructure Profiling Illuminates Transcriptome Structure in Crowded Spaces. Biorxiv : the Preprint Server For Biology |
Fang L, Velema WA, Lee Y, et al. (2023) Pervasive transcriptome interactions of protein-targeted drugs. Nature Chemistry |
Jun YW, Kant M, Coskun E, et al. (2023) Possible Genetic Risks from Heat-Damaged DNA in Food. Acs Central Science. 9: 1170-1179 |