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首页> 外文期刊>Eukaryotic cell >Members of the Penicillium chrysogenum Velvet Complex Play Functionally Opposing Roles in the Regulation of Penicillin Biosynthesis and Conidiation
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Members of the Penicillium chrysogenum Velvet Complex Play Functionally Opposing Roles in the Regulation of Penicillin Biosynthesis and Conidiation

机译:产黄青霉菌天鹅绒复合体成员在青霉素生物合成和整合过程中发挥功能相反的作用

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A velvet multisubunit complex was recently detected in the filamentous fungus Penicillium chrysogenum, the major industrial producer of the β-lactam antibiotic penicillin. Core components of this complex are P. chrysogenum VelA (PcVelA) and PcLaeA, which regulate secondary metabolite production, hyphal morphology, conidiation, and pellet formation. Here we describe the characterization of PcVelB, PcVelC, and PcVosA as novel subunits of this velvet complex. Using yeast two-hybrid analysis and bimolecular fluorescence complementation (BiFC), we demonstrate that all velvet proteins are part of an interaction network. Functional analyses using single- and double-knockout strains clearly indicate that velvet subunits have opposing roles in the regulation of penicillin biosynthesis and light-dependent conidiation. PcVelC, together with PcVelA and PcLaeA, activates penicillin biosynthesis, while PcVelB represses this process. In contrast, PcVelB and PcVosA promote conidiation, while PcVelC has an inhibitory effect. Our genetic analyses further show that light-dependent spore formation depends not only on PcVelA but also on PcVelB and PcVosA. The results provided here contribute to our fundamental understanding of the function of velvet subunits as part of a regulatory network mediating signals responsible for morphology and secondary metabolism and will be instrumental in generating mutants with newly derived properties that are relevant to strain improvement programs.
机译:最近,在β-内酰胺类抗生素青霉素的主要工业生产商丝状真菌Penicillium chrysogenum中发现了一种天鹅绒多亚基复合物。该复合物的核心成分是产黄青霉菌VelA(PcVelA)和PcLaeA,它们调节次生代谢产物的产生,菌丝形态,分生孢子和沉淀形成。在这里,我们将PcVelB,PcVelC和PcVosA的特征描述为该天鹅绒复合物的新亚基。使用酵母双杂交分析和双分子荧光互补(BiFC),我们证明了所有天鹅绒蛋白都是相互作用网络的一部分。使用单敲除和双敲除菌株的功能分析清楚地表明,天鹅绒亚基在青霉素生物合成和光依赖构象的调控中具有相反的作用。 PcVelC与PcVelA和PcLaeA一起激活青霉素的生物合成,而PcVelB抑制该过程。相反,PcVelB和PcVosA促进分生,而PcVelC具有抑制作用。我们的遗传分析进一步表明,光依赖性孢子的形成不仅取决于PcVelA,而且取决于PcVelB和PcVosA。此处提供的结果有助于我们对天鹅绒亚基功能的基本了解,作为调节网络的一部分,该网络介导负责形态和次级代谢的信号,并将有助于生成具有与菌株改良计划相关的新衍生特性的突变体。

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