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Biosynthesis of the immunosuppressants FK506, FK520, and rapamycin involves a previously undescribed family of enzymes acting on chorismate

机译:免疫抑制剂FK506,FK520和雷帕霉素的生物合成涉及以前未描述的作用于分支酸的酶家族

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摘要

The macrocyclic polyketides FK506, FK520, and rapamycin are potent immunosuppressants that prevent T-cell proliferation through initial binding to the immunophilin FKBP12. Analogs of these molecules are of considerable interest as therapeutics in both metastatic and inflammatory disease. For these polyketides the starter unit for chain assembly is (4R,5R)-4,5-dihydroxycyclohex-1-enecarboxylic acid derived from the shikimate pathway. We show here that the first committed step in its formation is hydrolysis of chorismate to form (4R,5R)-4,5-dihydroxycyclohexa-1,5-dienecarboxylic acid. This chorismatase activity is encoded by fkbO in the FK506 and FK520 biosynthetic gene clusters, and by rapK in the rapamycin gene cluster of Streptomyces hygroscopicus. Purified recombinant FkbO (from FK520) efficiently catalyzed the chorismatase reaction in vitro, as judged by HPLC-MS and NMR analysis. Complementation using fkbO from either the FK506 or the FK520 gene cluster of a strain of S. hygroscopicus specifically deleted in rapK (BIOT-4010) restored rapamycin production, as did supplementation with (4R,5R)-4,5-dihydroxycyclohexa-1,5-dienecarboxylic acid. Although BIOT-4010 produced no rapamycin, it did produce low levels of BC325, a rapamycin analog containing a 3-hydroxybenzoate starter unit. This led us to identify the rapK homolog hyg5 as encoding a chorismatase/3-hydroxybenzoate synthase. Similar enzymes in other bacteria include the product of the bra8 gene from the pathway to the terpenoid natural product brasilicardin. Expression of either hyg5 or bra8 in BIOT-4010 led to increased levels of BC325. Also, purified Hyg5 catalyzed the predicted conversion of chorismate into 3-hydroxybenzoate. FkbO, RapK, Hyg5, and Bra8 are thus founder members of a previously unrecognized family of enzymes acting on chorismate.
机译:大环聚酮化合物FK506,FK520和雷帕霉素是有效的免疫抑制剂,可通过与免疫亲和素FKBP12的初始结合来防止T细胞增殖。这些分子的类似物作为转移性和炎性疾病的治疗剂引起了极大的兴趣。对于这些聚酮化合物,链组装的起始单元是衍生自sh草酸酯途径的(4R,5R)-4,5-二羟基环己基-1-烯羧酸。我们在这里显示其形成的第一个重要步骤是分支酸酯的水解,以形成(4R,5R)-4,5-二羟基环己-1,5-二烯羧酸。在FK506和FK520生物合成基因簇中,fkbO编码该绒毛膜酶活性,在吸水链霉菌的雷帕霉素基因簇中,由rapK编码。如通过HPLC-MS和NMR分析所判断的,纯化的重组FkbO(来自FK520)在体外有效催化了脉状线酶反应。使用在rapK(BIOT-4010)中特异性缺失的吸水链球菌菌株FK506或FK520基因簇的fkbO进行的互补作用可恢复雷帕霉素的产生,补充(4R,5R)-4,5-二羟基环己-1 5-二烯羧酸。尽管BIOT-4010没有产生雷帕霉素,但确实产生了低水平的BC325,即含有3-羟基苯甲酸酯起始剂单元的雷帕霉素类似物。这使我们确定了rapK同源hyg5编码为chorismatase / 3-羟基苯甲酸酯合酶。其他细菌中的类似酶包括bra8基因从萜类天然产物巴西ilicardin途径的产物。 hyot5或bra8在BIOT-4010中的表达导致BC325水平升高。同样,纯化的Hyg5可以催化分支糖酸盐转化为3-羟基苯甲酸酯的预期转化。因此,FkbO,RapK,Hyg5和Bra8是先前未认识到作用于分支酸的酶家族的创始成员。

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