首页> 外文期刊>Frontiers in Microbiology >The Streptomyces coelicolor Small ORF trpM Stimulates Growth and Morphological Development and Exerts Opposite Effects on Actinorhodin and Calcium-Dependent Antibiotic Production
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The Streptomyces coelicolor Small ORF trpM Stimulates Growth and Morphological Development and Exerts Opposite Effects on Actinorhodin and Calcium-Dependent Antibiotic Production

机译:<斜视>链霉菌(Streptomyces)(strealomyces)共溶胶小ORF <斜斜体> TRPM 刺激生长和形态学发育,并对Actinorhodin和钙依赖性抗生素生产的影响相反

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In actinomycetes, antibiotic production is often associated with a morpho-physiological differentiation program that is regulated by complex molecular and metabolic networks. Many aspects of these regulatory circuits have been already elucidated and many others still deserve further investigations. In this regard, the possible role of many small open reading frames (smORFs) in actinomycete morpho-physiological differentiation is still elusive. In Streptomyces coelicolor , inactivation of the smORF trpM (SCO2038) – whose product modulates L-tryptophan biosynthesis – impairs production of antibiotics and morphological differentiation. Indeed, it was demonstrated that TrpM is able to interact with PepA (SCO2179), a putative cytosol aminopeptidase playing a key role in antibiotic production and sporulation. In this work, a S. coelicolor trpM knock-in (Sco- trpM KI) mutant strain was generated by cloning trpM into overexpressing vector to further investigate the role of trpM in actinomycete growth and morpho-physiological differentiation. Results highlighted that trpM : (i) stimulates growth and actinorhodin (ACT) production; (ii) decreases calcium-dependent antibiotic (CDA) production; (iii) has no effect on undecylprodigiosin production. Metabolic pathways influenced by trpM knock-in were investigated by combining two-difference in gel electrophoresis/nanoliquid chromatography coupled to electrospray linear ion trap tandem mass spectrometry (2D-DIGE/nanoLC-ESI-LIT-MS/MS) and by LC-ESI-MS/MS procedures, respectively. These analyses demonstrated that over-expression of trpM causes an over-representation of factors involved in protein synthesis and nucleotide metabolism as well as a down-representation of proteins involved in central carbon and amino acid metabolism. At the metabolic level, this corresponded to a differential accumulation pattern of different amino acids – including aromatic ones but tryptophan – and central carbon intermediates. PepA was also down-represented in Sco- trpM KI. The latter was produced as recombinant His-tagged protein and was originally proven having the predicted aminopeptidase activity. Altogether, these results highlight the stimulatory effect of trpM in S. coelicolor growth and ACT biosynthesis, which are elicited through the modulation of various metabolic pathways and PepA representation, further confirming the complexity of regulatory networks that control antibiotic production in actinomycetes.
机译:在放线菌中,抗生素产生通常与由复杂的分子和代谢网络调节调节的静脉生理分化计划。这些监管电路的许多方面已经阐明,许多其他方面仍然应该得到进一步的调查。在这方面,许多小型开放阅读框(Smorf)在放射性肌瘤的情况下的可能作用仍然难以捉摸。在链霉菌中的共霉菌中,灭活Smorf TRPM(SCO2038) - 其产品调节L-色氨酸生物合成 - 损害抗生素和形态学分化的产生。实际上,证明TRPM能够与Pepa(SCO2179)相互作用,该诱导的细胞源氨肽酶在抗生素生产和孢子中发挥着关键作用。在这项工作中,通过将TRPM克隆到过表达载体中产生S.的Coelicolor TRPM敲入(SCO-TRPM Ki)突变菌株,以进一步研究TRPM在放线菌仪生长和均相生理分化中的作用。结果突出显示,TRPM:(i)刺激生长和Actinorhodin(ACT)生产; (ii)减少钙依赖性抗生素(CDA)生产; (iii)对Undecylprodigiosin的产生没有影响。通过将凝胶电泳/纳米替代色谱法相结合到电喷雾线性离子捕获串联质谱(2D-Dige / NaNolc-LIT-MS / MS)和LC-ESI,通过组合凝胶电泳/纳米喹氢色谱法影响的代谢途径进行研究 - 分别为/ ms程序。这些分析表明,TRPM的过表达导致蛋白质合成和核苷酸代谢的因素的过度表示,以及参与中央碳和氨基酸代谢的蛋白质的下降。在代谢水平,这相当于不同氨基酸的差分累积模式 - 包括芳香族,但是色氨酸 - 和中央碳中间体。 Pepa也以SCO-TRPM KI表示下来。后者被制备为重组他标记的蛋白质,并最初被证明具有预测的氨基肽酶活性。总之,这些结果突出了TRPM在S.共射出的生长和作用生物合成中的刺激作用,其通过调节各种代谢途径和胃蛋白酶的调节来引发,进一步证实了控制抗生素生产在放线菌中的调节网络的复杂性。

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