Jonathan D. Caranto
Affiliations: | 2007-2013 | Chemistry | The University of Texas at San Antonio, San Antonio, TX, United States |
Area:
Bioinorganic chemistryGoogle:
"Jonathan Caranto"Mean distance: 10.58 | S | N | B | C | P |
Parents
Sign in to add mentorDonald M. Kurtz | grad student | 2013 | UT San Antonio | |
(The nitric oxide reductase mechanism of flavo-diiron proteins.) | ||||
Kyle Matthew Lancaster | post-doc | 2013-2017 | Cornell |
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Publications
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Transue WJ, Snyder RA, Caranto JD, et al. (2022) Particle Swarm Fitting of Spin Hamiltonians: Magnetic Circular Dichroism of Reduced and NO-Bound Flavodiiron Protein. Inorganic Chemistry |
Strickland KA, Holland AA, Trudeau A, et al. (2022) Reduction of a Heme Cofactor Initiates -Nitroglycine Degradation by NnlA. Applied and Environmental Microbiology. e0102322 |
Ma Z, Holland AA, Szlamkowicz I, et al. (2022) The hemerythrin-like diiron protein from Mycobacterium kansasii is a nitric oxide peroxidase. The Journal of Biological Chemistry. 101696 |
Martin CP, Chen M, Martinez MF, et al. (2021) The Ferric-Superoxo Intermediate of the TxtE Nitration Pathway Resists Reduction, Facilitating Its Reaction with Nitric Oxide. Biochemistry |
Caranto JD. (2019) The emergence of nitric oxide in the biosynthesis of bacterial natural products. Current Opinion in Chemical Biology. 49: 130-138 |
Vilbert AC, Caranto JD, Lancaster KM. (2018) Influences of the heme-lysine crosslink in cytochrome P460 over redox catalysis and nitric oxide sensitivity. Chemical Science. 9: 368-379 |
Dong M, Kathiresan V, Fenwick MK, et al. (2018) Organometallic and radical intermediates reveal mechanism of diphthamide biosynthesis. Science (New York, N.Y.). 359: 1247-1250 |
Lancaster KM, Caranto JD, Majer SH, et al. (2018) Alternative Bioenergy: Updates to and Challenges in Nitrification Metalloenzymology Joule. 2: 421-441 |
Weitz AC, Giri N, Caranto JD, et al. (2017) Spectroscopy and DFT calculations of a flavo-diiron enzyme implicate new diiron site structures. Journal of the American Chemical Society |
Caranto JD, Lancaster KM. (2017) Nitric oxide is an obligate bacterial nitrification intermediate produced by hydroxylamine oxidoreductase. Proceedings of the National Academy of Sciences of the United States of America |