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基因组挖掘和 cypemycin 生物合成的遗传分析揭示了一类不同寻常的翻译后修饰肽。

Genome mining and genetic analysis of cypemycin biosynthesis reveal an unusual class of posttranslationally modified peptides.

机构信息

Department of Molecular Microbiology, John Innes Centre, Norwich NR4 7UH, United Kingdom.

出版信息

Proc Natl Acad Sci U S A. 2010 Sep 14;107(37):16297-302. doi: 10.1073/pnas.1008608107. Epub 2010 Aug 30.

Abstract

Posttranslational modification of amino acids confers a range of structural features and activities on ribosomally synthesized peptides, many of which have potent antimicrobial or other biological activities. Cypemycin is an extensively modified linear peptide produced by Streptomyces sp. OH-4156 with potent in vitro activity against mouse leukemia cells. Cypemycin does not contain lanthionine bridges but exhibits some of the structural features of lantibiotics, notably dehydrated threonines (dehydrobutyrines) and a C-terminal S-[(Z)-2-aminovinyl]-D-cysteine. Consequently it was classified as a member of the lantibiotic family of posttranslationally modified peptides. Cypemycin also possesses two L-allo-isoleucine residues and an N-terminal N,N-dimethylalanine, both unique amino acid modifications. We identified and heterologously expressed the cypemycin biosynthetic gene cluster and performed a mutational analysis of each individual gene. We show that even the previously described modifications are carried out by unusual enzymes or via a modification pathway unrelated to lantibiotic biosynthesis. Bioinformatic analysis revealed the widespread occurrence of cypemycin-like gene clusters within the bacterial kingdom and in the Archaea. Cypemycin is the founding member of an unusual class of posttranslationally modified ribosomally synthesized peptides, the linaridins.

摘要

氨基酸的翻译后修饰赋予了核糖体合成肽一系列结构特征和活性,其中许多具有强大的抗菌或其他生物活性。Cypemycin 是一种由链霉菌 OH-4156 产生的广泛修饰的线性肽,对体外小鼠白血病细胞具有很强的活性。Cypemycin 不含硫醚桥,但表现出一些类脂肽抗生素的结构特征,特别是脱水苏氨酸(脱氢丁氨酸)和 C 末端 S-[(Z)-2-氨基乙烯基]-D-半胱氨酸。因此,它被归类为翻译后修饰肽的类脂肽家族的成员。Cypemycin 还含有两个 L-allo-异亮氨酸残基和一个 N 末端 N,N-二甲基丙氨酸,这两种都是独特的氨基酸修饰。我们鉴定并异源表达了 cypemycin 生物合成基因簇,并对每个基因进行了突变分析。我们表明,即使是先前描述的修饰也是由不寻常的酶或与类脂肽生物合成无关的修饰途径完成的。生物信息学分析显示,在细菌王国和古菌中广泛存在 cypemycin 样基因簇。Cypemycin 是一类不寻常的翻译后修饰核糖体合成肽,即 linaridins 的创始成员。

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