Namthip Sitachitta
Oregon State University
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Tetrahedron | 2000
Namthip Sitachitta; Brian L. Marquez; R. Thomas Williamson; James Rossi; Mary Ann Roberts; William H. Gerwick; Viet-Anh Nguyen; Christine L. Willis
Abstract Structural and biosynthetic studies have been conducted on the barbamide class of molluscicidal agent. Dechlorobarbamide was isolated from a Curacao collection of the marine cyanobacterium Lyngbya majuscula and its structure determined through spectroscopic analysis and comparisons with barbamide. The absolute stereochemistry of the dolaphenine moiety of barbamide was determined to be S , defining the absolute configuration of barbamide as 2 S ,7 S . Stable isotope feeding experiments conducted with cultured L. majuscula have provided clear evidence that barbamide biosynthesis involves chlorination of the unactivated pro - R methyl group of leucine. Experiments with l -[ 2 H 10 ]leucine demonstrated that chlorination of the pro- R methyl occurs without detectable activation via the leucine-catabolic pathway. Moreover, an extremely high level of incorporation of fed [2- 13 C]-5,5,5-trichloroleucine into barbamide indicates that leucine is the probable substrate for the chlorination reaction. Incorporations of [1,2- 13 C 2 ]acetate and [1- 13 C, 1- 18 O]acetate confirmed the origins of C-5 and C-6 whereas incorporation of l -[3- 13 C]phenylalanine supported the hypothesis that the phenyl group and its three carbon side-chain in barbamide (C-7, C-8 and C-10–C-16) arise from phenylalanine. The thiazole ring (C-17–C-18) of 1 was shown to likely arise from cysteine through a [2- 13 C, 15 N]glycine feeding experiment. Detection of intact 13 C– 15 N bond was observed by application of a new GHNMBC NMR experiment. Results from this latter feeding experiment also indicated that the N–CH 3 and O–CH 3 groups of 1 originate from the C 1 pool; this was supported by enrichment in these methyl groups when cultures were provided with l -[methyl- 13 C]methionine.
Tetrahedron Letters | 1999
R. Thomas Williamson; Namthip Sitachitta; William H. Gerwick
A new NMR experiment is presented for the detection of intact 13C15N units in biosynthetic studies. Its use is demonstrated through a feeding experiment utilizing [2-13C, 15N] glycine which confirmed the origin of the thiazole ring in the marine cyanobacterial metabolite barbamide as originating from cysteine.
Journal of Natural Products | 2004
Zunxue Chang; Namthip Sitachitta; James Rossi; Mary Ann Roberts; Patricia M. Flatt; Junyong Jia; David H. Sherman; William H. Gerwick
Biochemical and Biophysical Research Communications | 1998
Tiziana Bisogno; Dominique Melck; L. De Petrocellis; M. Yu. Bobrov; N. M. Gretskaya; V. V. Bezuglov; Namthip Sitachitta; William H. Gerwick; V. Di Marzo
Journal of the American Chemical Society | 2000
Min Wu; Tatsufumi Okino; Lisa M. Nogle; Brian L. Marquez; R. Thomas Williamson; Namthip Sitachitta; Frederick W. Berman; Thomas F. Murray; Kevin McGough; Robert M. J. Jacobs; Kimberly Colsen; Toshinobu Asano; Fumiaki Yokokawa; and Takayuki Shioiri; William H. Gerwick
Journal of Natural Products | 1998
Namthip Sitachitta; William H. Gerwick
Journal of the American Chemical Society | 1998
Namthip Sitachitta; James Rossi; Mary Ann Roberts; William H. Gerwick; Matthew D. Fletcher; Christine L. Willis
Journal of Natural Products | 2003
Lik Tong Tan; Namthip Sitachitta; William H. Gerwick
Journal of Natural Products | 2000
Namthip Sitachitta; Williamson Rt; William H. Gerwick
Journal of Natural Products | 2006
Sutaporn Bunyajetpong; Wesley Y. Yoshida; Namthip Sitachitta; Kunimitsu Kaya