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An O-Phosphotransferase Catalyzes Phosphorylation of Hygromycin A in the Antibiotic-Producing Organism Streptomyces hygroscopicus

机译:O-磷酸转移酶催化潮霉素链霉菌吸水链霉菌中潮霉素A的磷酸化。

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摘要

The antibiotic hygromycin A (HA) binds to the 50S ribosomal subunit and inhibits protein synthesis in gram-positive and gram-negative bacteria. The HA biosynthetic gene cluster in Streptomyces hygroscopicus NRRL 2388 contains 29 open reading frames, which have been assigned putative roles in biosynthesis, pathway regulation, and self-resistance. The hyg21 gene encodes an O-phosphotransferase with a proposed role in self-resistance. We observed that insertional inactivation of hyg21 in S. hygroscopicus leads to a greater than 90% decrease in HA production. The wild type and the hyg21 mutant were comparably resistant to HA. Using Escherichia coli as a heterologous host, we expressed and purified Hyg21. Kinetic analyses revealed that the recombinant protein catalyzes phosphorylation of HA (Km = 30 ± 4 μM) at the C-2‴ position of the fucofuranose ring in the presence of ATP (Km = 200 ± 20 μM) or GTP (Km = 350 ± 60 μM) with a kcat of 2.2 ± 0.1 min−1. The phosphorylated HA is inactive against HA-sensitive ΔtolC E. coli and Streptomyces lividans. Hyg21 also phosphorylates methoxyhygromycin A and desmethylenehygromycin A with kcat and Km values similar to those observed with HA. Phosphorylation of the naturally occurring isomers of 5‴-dihydrohygromycin A and 5‴-dihydromethoxyhygromycin A was about 12 times slower than for the corresponding non-natural isomers. These studies demonstrate that Hyg21 is an O-phosphotransferase with broad substrate specificity, tolerating changes in the aminocyclitol moiety more than in the fucofuranose moiety, and that phosphorylation by Hyg21 is one of several possible mechanisms of self-resistance in S. hygroscopicus NRRL 2388.
机译:抗生素潮霉素A(HA)与50S核糖体亚基结合,并抑制革兰氏阳性和革兰氏阴性细菌中的蛋白质合成。吸水链霉菌NRRL 2388中的HA生物合成基因簇包含29个开放阅读框,这些阅读框已被假定在生物合成,途径调控和自我抵抗中起作用。 hyg21基因编码一个O-磷酸转移酶,具有自我抗性的功能。我们观察到吸湿链球菌中hyg21的插入失活导致HA产生的降低幅度超过90%。野生型和hyg21突变体对HA具有相对的抗性。使用大肠杆菌作为异源宿主,我们表达并纯化了Hyg21。动力学分析表明,该重组蛋白在存在ATP(Km = 200±20μM)或GTP(Km = 350±3)的情况下,在呋喃呋喃糖环的C-2‴位催化HA(Km = 30±4μM)的磷酸化。 60μM),kcat为2.2±0.1分钟 -1 。磷酸化的HA对HA敏感的ΔtolC大肠埃希氏菌和淡链霉菌无活性。 Hyg21还用与HA相似的kcat和Km值使甲氧基潮霉素A和去甲潮霉素A磷酸化。 5′-二氢潮霉素A和5′-二氢甲氧基潮霉素A的天然异构体的磷酸化比相应的非天然异构体慢约12倍。这些研究表明,Hyg21是一种O-磷酸转移酶,具有广泛的底物特异性,比环呋喃呋喃糖部分更能容忍氨基环糖醇部分的变化,而且Hyg21的磷酸化是 S自我抵抗的几种可能机制之一。 NRRL 2388。

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