首页> 美国卫生研究院文献>The Journal of Biological Chemistry >A Novel NN-8-Amino-8-demethyl-d-riboflavin Dimethyltransferase (RosA) Catalyzing the Two Terminal Steps of Roseoflavin Biosynthesis in Streptomyces davawensis
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A Novel NN-8-Amino-8-demethyl-d-riboflavin Dimethyltransferase (RosA) Catalyzing the Two Terminal Steps of Roseoflavin Biosynthesis in Streptomyces davawensis

机译:新型NN-8-氨基-8-去甲基-d-核黄素二甲基转移酶(RosA)催化达瓦维链霉菌中玫瑰黄素生物合成的两个末端步骤

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摘要

Streptomyces davawensis synthesizes the antibiotic roseoflavin (RoF) (8-dimethylamino-8-demethyl-d-riboflavin). It was postulated that RoF is synthesized from riboflavin via 8-amino- (AF) and 8-methylamino-8-demethyl-d-riboflavin (MAF). In a cell-free extract of S. davawensis, an S-adenosyl methionine-dependent conversion of AF into MAF and RoF was observed. The corresponding N,N-8-amino-8-demethyl-d-riboflavin dimethyltransferase activity was enriched by column chromatography. The final most active fraction still contained at least five different proteins that were analyzed by enzymatic digestion and concomitant de novo sequencing by MS/MS. One of the sequences matched a hypothetical peptide fragment derived from an as yet uncharacterized open reading frame (sda77220) located in the middle of a (putative) gene cluster within the S. davawensis genome. Expression of ORF sda77220 in Escherichia coli revealed that the corresponding gene product had N,N-8-amino-8-demethyl-d-riboflavin dimethyltransferase activity. Inactivation of ORF sda77220 led to a S. davawensis strain that synthesized AF but not MAF or RoF. Accordingly, as the first identified gene of RoF biosynthesis, ORF sda77220 was named rosA. RosA (347 amino acids; 38 kDa) was purified from a recombinant E. coli strain (as a His6-tagged protein) and was biochemically characterized (apparent Km for AF = 57.7 ± 9.2 μm; apparent KD for AF = 10.0 μm; kcat = 0.37 ± 0.02 s−1). RosA is a unique enzyme and may be useful for a variety of applications.
机译:达沃链霉菌(Streptomyces davawensis)合成了抗生素玫瑰黄素(RoF)(8-二甲氨基-8-去甲基-d-核黄素)。推测RoF是通过8-氨基-(AF)和8-甲基氨基-8-脱甲基-d-核黄素(MAF)由核黄素合成的。在达弗氏链球菌的无细胞提取物中,观察到AF依赖于S-腺苷甲硫氨酸的转化为MAF和RoF。通过柱色谱法富集相应的N,N-8-氨基-8-脱甲基-d-核黄素二甲基转移酶活性。最终最活跃的部分仍包含至少五个不同的蛋白质,这些蛋白质通过酶消化和伴随的MS / MS重新测序进行了分析。序列之一与假想肽片段匹配,该假想肽片段源自尚无特征的开放阅读框(sda77220),位于S. davawensis基因组内(假定)基因簇的中间。 ORF sda77220在大肠杆菌中的表达表明相应的基因产物具有N,N-8-氨基-8-去甲基-d-核黄素二甲基转移酶活性。 ORF sda77220的失活导致了S. davawensis菌株,该菌株合成了AF,但没有合成MAF或RoF。因此,ORF sda77220作为RoF生物合成的第一个鉴定基因被命名为rosA。从重组大肠杆菌菌株中纯化出RosA(347个氨基酸; 38 kDa)(作为带有His6标签的蛋白),并进行了生化鉴定(AF的表观Km = 57.7±9.2μm; AF的表观KD = 10.0μm; kcat = 0.37±0.02 s -1 )。 RosA是一种独特的酶,可用于多种应用。

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