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Number of references found for the '' category : 8

(1)Aulakh, et al. (2011). Total synthesis and complete structural assignment of thiocillin I. J Am Chem Soc. 133(15):5900-4. [PudMed:21446660]
(2)Bowers, et al. (2010). Manipulation of thiocillin variants by prepeptide gene replacement: structure, conformation, and activity of heterocycle substitution mutants. J Am Chem Soc. 132(21):7519-27. [PudMed:20455532]
(3)Wieland, et al. (2009). Thirteen posttranslational modifications convert a 14-residue peptide into the antibiotic thiocillin. Proc Natl Acad Sci U S A. 106(8):2549-53. [PudMed:19196969]
(4)Acker, et al. (2009). Generation of thiocillin variants by prepeptide gene replacement and in vivo processing by Bacillus cereus. J Am Chem Soc. 131(48):17563-5. [PudMed:19911780]
(5)Shoji, et al. (1981). Structural studies on thiocillins I, II and III (studies on antibiotics from the genus Bacillus XXIX). J Antibiot (Tokyo). 34(9):1126-36. [PudMed:7328054]
(6)Shoji, et al. (1976). Isolation of three new antibiotics, thiocillins I, II and III, related to micrococcin P. Studies on antibiotics from the genus Bacillus. VIII. J Antibiot (Tokyo). 29(4):366-74. [PudMed:819410]
(7) Liao, et al. (2009). Thiopeptide Biosynthesis Featuring Ribosomally Synthesized Precursor Peptides and Conserved Posttranslational Modifications. Chem. Biol. (Cambridge, MA, U. S.). 16(2): 141-147. [on SciFinder(R)]
(8) Yonezawa, et al. (2002). A synthesis of a hydroxyvaline-derived thiazole-4-carboxylate constituting an antibiotic, thiocillin I. Heterocycles. 57(5): 903-908 . [on SciFinder(R)]