Jungwook Kim, Ph.D.
Affiliations: | Texas A & M University, College Station, TX, United States |
Area:
EnzymologyGoogle:
"Jungwook Kim"Mean distance: 9.69 | S | N | B | C | P |
Parents
Sign in to add mentorFrank M. Raushel | grad student | 2004 | Texas A & M | |
(Molecular engineering of oligomerization and metabolite channeling through a molecular tunnel of carbamoyl phosphate synthetase.) |
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Publications
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Yoo J, Lee J, Kim J. (2023) Structural basis for the selective methylation of 5-carboxymethoxyuridine in tRNA modification. Nucleic Acids Research |
Jeong H, Kim J. (2021) Unique anticodon loop conformation with the flipped-out wobble nucleotide in the crystal structure of unbound tRNAVal. Rna (New York, N.Y.) |
Cho G, Lee E, Kim J. (2021) Structural insights into phosphatidylethanolamine formation in bacterial membrane biogenesis. Scientific Reports. 11: 5785 |
Jeong S, Kim J. (2020) Structural snapshots of CmoB in various states during wobble uridine modification of tRNA. Biochemical and Biophysical Research Communications |
Kang J, Pagire HS, Kang D, et al. (2020) Structural basis for the inhibition of PDK2 by novel ATP- and lipoyl-binding site targeting compounds. Biochemical and Biophysical Research Communications |
Lee S, Kang J, Kim J. (2019) Structural and biochemical characterization of Rv0187, an O-methyltransferase from Mycobacterium tuberculosis. Scientific Reports. 9: 8059 |
Kim J, Xiao H, Koh J, et al. (2015) Determinants of the CmoB carboxymethyl transferase utilized for selective tRNA wobble modification. Nucleic Acids Research. 43: 4602-13 |
Hitchcock DS, Fan H, Kim J, et al. (2013) Structure-guided discovery of new deaminase enzymes. Journal of the American Chemical Society. 135: 13927-33 |
Kim J, Almo SC. (2013) Structural basis for hypermodification of the wobble uridine in tRNA by bifunctional enzyme MnmC. Bmc Structural Biology. 13: 5 |
Cook I, Wang T, Almo SC, et al. (2013) Testing the sulfotransferase molecular pore hypothesis. The Journal of Biological Chemistry. 288: 8619-26 |