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Secretion of FK506/FK520 and rapamycin by Streptomyces inhibits the growth of competing Saccharomyces cerevisiae and Cryptococcus neoformans

机译:FK506 / FK520的分泌物和雷霉素通过链霉菌抑制竞争酵母菌和碱性酿酒酵母的生长

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FK506 and rapamycin are immunosuppressants that inhibit signalling cascades required for T-cell activation, yet both are natural products of Streptomyces that live in the soil. FK506 and rapamycin also have potent antimicrobial activity against yeast and pathogenic fungi, suggesting a natural role in inhibiting growth of competing micro-organisms. The immunosuppressive and antimicrobial activities of FK506 and rapamycin are mediated by binding to the FKBP12 prolyl isomerase and the resulting FKBP12/FK506 and FKBP12/rapamycin complexes inhibit conserved protein targets, either the phosphatase calcineurin or the TOR (target of rapamycin) kinases, respectively. Streptomyces sp., ‘Streptomyces hygroscopicus subsp. ascomyceticus’ and Streptomyces hygroscopicus, which produce FK506, FK520 (also known as ascomycin, a C21 ethyl derivative of FK506) and rapamycin, respectively, produced toxins that inhibited the growth of competing cells of the yeast Saccharomyces cerevisiae and the pathogenic fungus Cryptococcus neoformans. Yeast and fungal mutants lacking FKBP12 or expressing dominant drug-resistant calcineurin or TOR mutants were resistant to FK506 and rapamycin, and to the toxins produced by Streptomyces. Streptomyces strains with mutations in the FK506 or rapamycin biosynthetic enzymes were impaired in toxin production. Finally, the toxins secreted by ‘S. hygroscopicus subsp. ascomyceticus’ and S. hygroscopicus promoted formation of FKBP12/calcineurin and FKBP12/TOR complexes in a two-hybrid assay and mutations that rendered calcineurin or TOR drug-resistant prevented interaction. These observations support the hypothesis that Streptomyces evolved to secrete FK506, FK520 and rapamycin as toxins to inhibit the growth of competing yeast and fungi.
机译:FK506和雷帕霉素是免疫抑制剂,其抑制T细胞活化所需的信号传导级联,但两者都是生活在土壤中的链霉菌的天然产物。 FK506和雷帕霉素还对酵母和病原真菌具有有效的抗菌活性,这表明在抑制竞争微生物的生长方面具有自然作用。 FK506和雷帕霉素的免疫抑制和抗微生物活性通过与FKBP12脯氨酰异构酶结合而介导的FKBP12 / FK506和FKBP12 /雷帕霉素络合物抑制保守的蛋白质靶标,分别是磷酸酶钙素蛋白或雷帕霉素的TOR(雷帕霉素)激酶的含量。 Streptomyces sp。,'Streptomyces hygroscopicus subsp。分别产生FK506,FK520(也称为Ascomcin,FK506的C21乙基衍生物)和雷帕霉素的ascomyceticus杂草杂草和雷帕霉素的含量产生毒素,其产生毒素,其抑制酵母酿酒酵母的竞争细胞和致病性真菌隐含细胞新族裔的生长。缺乏FKBP12或表达显性耐药性钙调素或者突变体的酵母和真菌突变体对FK506和雷帕霉素进行抗性,并抗链霉菌产生的毒素。在毒素生产中损害了FK506或雷帕霉素生物合成酶中突变的链霉菌菌株。最后,毒素被毒素分泌的。 Hygroscopicus subsp。 Ascomyceticus'和S. Hygroscopicus促进了在双杂交测定中形成FKBP12 /钙肌苷和FKBP12 / TOR复合物的形成和使钙蛋白或耐药防止相互作用的突变。这些观察结果支持肌腱瘤的假设分泌FK506,FK520和雷帕霉素作为毒素,以抑制竞争酵母和真菌的生长。

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