首页> 外文期刊>The Biochemical Journal >Post-translational enzyme modification by the phosphopantetheinyl transferase is required for lysine and penicillin biosynthesis but not for roquefortine or fatty acid formation in Penicillium chrysogenum.
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Post-translational enzyme modification by the phosphopantetheinyl transferase is required for lysine and penicillin biosynthesis but not for roquefortine or fatty acid formation in Penicillium chrysogenum.

机译:赖氨酸和青霉素的生物合成需要磷酸泛肽基转移酶对翻译后酶进行修饰,而产黄青霉中的罗福福汀或脂肪酸形成则不需要。

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摘要

NRPSs (non-ribosomal peptide synthetases) and PKSs (polyketide synthases) require post-translational phosphopantetheinylation to become active. This reaction is catalysed by a PPTase (4'-phosphopantetheinyl transferase). The ppt gene of Penicillium chrysogenum, encoding a protein that shares 50% similarity with the stand-alone large PPTases, has been cloned. This gene is present as a single copy in the genome of the wild-type and high-penicillin-producing strains (containing multiple copies of the penicillin gene cluster). Amplification of the ppt gene produced increases in isopenicillin N and benzylpenicillin biosynthesis. A PPTase-defective mutant (Wis54-PPT(-)) was obtained. It required lysine and lacked pigment and penicillin production, but it still synthesized normal levels of roquefortine. The biosynthesis of roquefortine does not appear to involve PPTase-mediated modification of the synthesizing enzymes. The PPT(-) mutant did not require fatty acids, which indicates that activation of the fatty acid synthase is performed by a different PPTase. Complementation of Wis54-PPT(-) with the ppt gene restored lysine biosynthesis, pigmentation and penicillin production, which demonstrates the wide range of processes controlled by this gene.
机译:NRPS(非核糖体肽合成酶)和PKS(聚酮化合物合成酶)需要翻译后磷酸泛素化才能发挥作用。该反应由PPTase(4'-磷酸泛锡基转移酶)催化。已克隆了产黄青霉的ppt基因,该基因编码与独立的大型PPTase共享50%相似性的蛋白质。该基因以单拷贝形式存在于野生型和高青霉素生产菌株(含有青霉素基因簇的多个拷贝)中。生成的ppt基因的扩增增加了异青霉素N和苄青霉素的生物合成。获得了一个PPTase缺陷型突变体(Wis54-PPT(-))。它需要赖氨酸,缺乏色素和青霉素的产生,但仍合成正常水平的罗福福汀。罗克福汀的生物合成似乎不涉及PPTase介导的合成酶修饰。 PPT(-)突变体不需要脂肪酸,这表明脂肪酸合酶的激活是由不同的PPTase进行的。 Wis54-PPT(-)与ppt基因的互补可恢复赖氨酸的生物合成,色素沉着和青霉素的产生,这证明了该基因控制的广泛过程。

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