首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >d-Sedoheptulose-7-phosphate is a common precursor for the heptoses of septacidin and hygromycin B
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d-Sedoheptulose-7-phosphate is a common precursor for the heptoses of septacidin and hygromycin B

机译:d-七羟庚糖-7-磷酸是七肽和潮霉素B庚糖的常见前体

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摘要

Seven-carbon-chain–containing sugars exist in several groups of important bacterial natural products. Septacidin represents a group of l-heptopyranoses containing nucleoside antibiotics with antitumor, antifungal, and pain-relief activities. Hygromycin B, an aminoglycoside anthelmintic agent used in swine and poultry farming, represents a group of d-heptopyranoses–containing antibiotics. To date, very little is known about the biosynthesis of these compounds. Here we sequenced the genome of the septacidin producer and identified the septacidin gene cluster by heterologous expression. After determining the boundaries of the septacidin gene cluster, we studied septacidin biosynthesis by in vivo and in vitro experiments and discovered that SepB, SepL, and SepC can convert d-sedoheptulose-7-phosphate (S-7-P) to ADP-l-glycero-β-d-manno-heptose, exemplifying the involvement of ADP-sugar in microbial natural product biosynthesis. Interestingly, septacidin, a secondary metabolite from a gram-positive bacterium, shares the same ADP-heptose biosynthesis pathway with the gram-negative bacterium LPS. In addition, two acyltransferase-encoding genes sepD and sepH, were proposed to be involved in septacidin side-chain formation according to the intermediates accumulated in their mutants. In hygromycin B biosynthesis, an isomerase HygP can recognize S-7-P and convert it to ADP-d-glycero-β-d-altro-heptose together with GmhA and HldE, two enzymes from the Escherichia coli LPS heptose biosynthetic pathway, suggesting that the d-heptopyranose moiety of hygromycin B is also derived from S-7-P. Unlike the other S-7-P isomerases, HygP catalyzes consecutive isomerizations and controls the stereochemistry of both C2 and C3 positions.
机译:几组重要的细菌天然产物中都存在含七碳链的糖。 Septacidin代表一组含有核苷抗生素且具有抗肿瘤,抗真菌和缓解疼痛作用的L-七吡喃糖。潮霉素B是用于猪和家禽养殖的一种氨基糖苷类驱虫药,代表一组含d-庚基吡喃糖的抗生素。迄今为止,对这些化合物的生物合成知之甚少。在这里,我们对septacidin生产者的基因组进行了测序,并通过异源表达鉴定了septacidin基因簇。在确定了septacidin基因簇的边界后,我们通过体内和体外实验研究了septacidin的生物合成,发现SepB,SepL和SepC可以将d-七庚糖-7-磷酸酯(S-7-P)转化为ADP-1 -甘油-β-d-甘露聚糖-庚糖,证明了ADP糖参与了微生物天然产物的生物合成。有趣的是,septacidin是革兰氏阳性细菌的次生代谢产物,与革兰氏阴性细菌LPS具有相同的ADP庚糖生物合成途径。另外,根据其突变体中积累的中间体,提出了两个酰基转移酶编码基因sepD和sepH参与庚酸苷侧链的形成。在潮霉素B的生物合成中,异构酶HygP可以识别S-7-P,并将其与GmhA和HldE一起转化为ADP-d-甘油-β-d-α-庚糖,这是来自大肠杆菌LPS庚糖生物合成途径的两种酶,表明潮霉素B的d-七吡喃糖部分也衍生自S-7-P。与其他S-7-P异构酶不同,HygP催化连续的异构化并控制C2和C3位置的立体化学。

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