Sudek Sebastian, Haygood Margo G, Youssef Diaa T A, Schmidt Eric W
Scripps Institution of Oceanography, University of California--San Diego, La Jolla, California, USA.
Appl Environ Microbiol. 2006 Jun;72(6):4382-7. doi: 10.1128/AEM.00380-06.
A gene cluster for the biosynthesis of a new small cyclic peptide, dubbed trichamide, was discovered in the genome of the global, bloom-forming marine cyanobacterium Trichodesmium erythraeum ISM101 because of striking similarities to the previously characterized patellamide biosynthesis cluster. The tri cluster consists of a precursor peptide gene containing the amino acid sequence for mature trichamide, a putative heterocyclization gene, an oxidase, two proteases, and hypothetical genes. Based upon detailed sequence analysis, a structure was predicted for trichamide and confirmed by Fourier transform mass spectrometry. Trichamide consists of 11 amino acids, including two cysteine-derived thiazole groups, and is cyclized by an N C terminal amide bond. As the first natural product reported from T. erythraeum, trichamide shows the power of genome mining in the prediction and discovery of new natural products.
在全球形成水华的海洋蓝细菌红海束毛藻Trichodesmium erythraeum ISM101的基因组中,发现了一个用于生物合成一种名为trichamide的新型小环肽的基因簇,这是因为它与先前已鉴定的帕台酰胺生物合成簇有显著相似性。trichamide基因簇由一个包含成熟trichamide氨基酸序列的前体肽基因、一个假定的杂环化基因、一个氧化酶、两个蛋白酶以及一些假定基因组成。基于详细的序列分析,预测了trichamide的结构,并通过傅里叶变换质谱法得到证实。Trichamide由11个氨基酸组成,包括两个半胱氨酸衍生的噻唑基团,并通过一个N - C末端酰胺键环化。作为从红海束毛藻中报道的首个天然产物,trichamide展示了基因组挖掘在预测和发现新天然产物方面的作用。