Alduina Rosa, Lo Piccolo Luca, D'Alia Davide, Ferraro Clelia, Gunnarsson Nina, Donadio Stefano, Puglia Anna Maria
University of Palermo, Dipartimento di Biologia Cellulare e dello Sviluppo, Viale delle Scienze, Parco d'Orleans II, 90128 Palermo, Italy.
J Bacteriol. 2007 Nov;189(22):8120-9. doi: 10.1128/JB.01247-07. Epub 2007 Sep 14.
The actinomycete Nonomuraea sp. strain ATCC 39727 produces the glycopeptide A40926, the precursor of the novel antibiotic dalbavancin. Previous studies have shown that phosphate limitation results in enhanced A40926 production. The A40926 biosynthetic gene (dbv) cluster, which consists of 37 genes, encodes two putative regulators, Dbv3 and Dbv4, as well as the response regulator (Dbv6) and the sensor-kinase (Dbv22) of a putative two-component system. Reverse transcription-PCR (RT-PCR) and real-time RT-PCR analysis revealed that the dbv14-dbv8 and the dbv30-dbv35 operons, as well as dbv4, were negatively influenced by phosphate. Dbv4 shows a putative helix-turn-helix DNA-binding motif and shares sequence similarity with StrR, the transcriptional activator of streptomycin biosynthesis in Streptomyces griseus. Dbv4 was expressed in Escherichia coli as an N-terminal His(6)-tagged protein. The purified protein bound the dbv14 and dbv30 upstream regions but not the region preceding dbv4. Bbr, a Dbv4 ortholog from the gene cluster for the synthesis of the glycopeptide balhimycin, also bound to the dbv14 and dbv30 upstream regions, while Dbv4 bound appropriate regions from the balhimycin cluster. Our results provide new insights into the regulation of glycopeptide antibiotics, indicating that the phosphate-controlled regulator Dbv4 governs two key steps in A40926 biosynthesis: the biosynthesis of the nonproteinogenic amino acid 3,5-dihydroxyphenylglycine and critical tailoring reactions on the heptapeptide backbone.
放线菌诺卡氏菌属菌株ATCC 39727可产生糖肽A40926,即新型抗生素达巴万星的前体。先前的研究表明,磷酸盐限制可提高A40926的产量。由37个基因组成的A40926生物合成基因(dbv)簇编码两个假定的调节因子Dbv3和Dbv4,以及一个假定的双组分系统的响应调节因子(Dbv6)和传感激酶(Dbv22)。逆转录PCR(RT-PCR)和实时RT-PCR分析表明,dbv14-dbv8和dbv30-dbv35操纵子以及dbv4受磷酸盐的负面影响。Dbv4显示出一个假定的螺旋-转角-螺旋DNA结合基序,并且与灰色链霉菌中链霉素生物合成的转录激活因子StrR具有序列相似性。Dbv4在大肠杆菌中作为N端His(6)标签蛋白表达。纯化后的蛋白与dbv14和dbv30的上游区域结合,但不与dbv4之前的区域结合。Bbr是来自糖肽巴龙霉素合成基因簇的Dbv4直系同源物,也与dbv14和dbv30的上游区域结合,而Dbv4与巴龙霉素簇的相应区域结合。我们的研究结果为糖肽类抗生素的调控提供了新的见解,表明磷酸盐控制的调节因子Dbv4在A40926生物合成中控制两个关键步骤:非蛋白氨基酸3,5-二羟基苯甘氨酸的生物合成以及七肽主链上的关键修饰反应。