首页> 外文期刊>Molecular Microbiology >An rplKDelta29-PALG-32 mutation leads to reduced expression of the regulatory genes ccaR and claR and very low transcription of the ceaS2 gene for clavulanic acid biosynthesis in Streptomyces clavuligerus.
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An rplKDelta29-PALG-32 mutation leads to reduced expression of the regulatory genes ccaR and claR and very low transcription of the ceaS2 gene for clavulanic acid biosynthesis in Streptomyces clavuligerus.

机译:rplKDelta29-PALG-32突变会导致调控基因ccaR和claR的表达降低,而用于棒状链霉菌棒状酸生物合成的ceaS2基因的转录极低。

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摘要

The transcriptional and translational control of the biosynthesis of the beta-lactamase inhibitor clavulanic acid is a subject of great scientific and industrial interest. To study the role of the ribosomal protein L11 on control of clavulanic acid gene transcription, the DNA region aspC-tRNA(trp)-secE-rplK-rplA-rplJ-rplL of Streptomyces clavuligerus was cloned and characterized. An S. clavuligerus rplK(DeltaPALG) mutant, with an internal 12 nucleotides in-frame deletion in the rplK gene, encoding the L11 (RplK) ribosomal protein lacking amino acids (29)PALG(32), was constructed by gene replacement. This deletion alters the L11 N-terminal domain that interacts with the RelA and class I releasing factors-mediated translational termination. The mutant grew well, showed threefold higher resistance to thiostrepton, did not form spores and lacked diffusible brown pigments, as compared with the wild-type strain. The wild-type phenotype was recovered by complementation with the native rplK gene. S. clavuligerus rplK(DeltaPALG) produced reduced levels of clavulanic acid (15-26% as compared with the wild type) and cephamycin C (40-50%) in cultures grown in defined SA and complex TSB media. The decreased yields resulted from an impaired transcription of the regulatory genes ccaR and claR and the cefD and ceaS2 genes for cephamycin and clavulanic acid biosynthesis respectively. Expression of ceaS2 encoding carboxyethylarginine synthase (CEAS), the precursor-committing enzyme for clavulanic acid biosynthesis, was particularly affected in this mutant. In the wild-type strain polyphosphorylated nucleotides peaked at 36-48 h of growth in SA cultures whereas expression of the cephamycin and clavulanic acid genes occurred 12-24 h earlier than the increase in ppGpp indicating that there is no strict correlation between the peak of ppGpp and the onset of transcription of the clavulanic acid and cephamycin C biosynthesis. The drastic effect of the rplK(DeltaPALG) mutation on the onset of expression of the ceaS2 and the regulatory ccaR and claR genes and the lack of correlation with ppGpp levels suggest that the onset of transcription of these genes is modulated by the conformational alteration of the N-terminal region of L11 probably by interaction with the nascent peptide releasing factors and with RelA.
机译:β-内酰胺酶抑制剂克拉维酸的生物合成的转录和翻译控制是科学和工业上的重大课题。为了研究核糖体蛋白L11在控制棒酸基因转录中的作用,克隆并鉴定了链霉菌链霉菌的DNA区域aspC-tRNA(trp)-secE-rplK-rplA-rplJ-rplL。通过基因置换,构建了一种S. clavuligerus rplK(DeltaPALG)突变体,该突变体在rplK基因中有12个核苷酸在框内缺失,编码缺少氨基酸的L11(RplK)核糖体蛋白(29)PALG(32)。该删除改变了与RelA和I类释放因子介导的翻译终止相互作用的L11 N末端结构域。与野生型菌株相比,该突变体生长良好,显示出对硫链球菌的三倍高抗性,不形成孢子,并且缺乏可扩散的棕色色素。通过与天然rplK基因互补来恢复野生型表型。在确定的SA和复杂的TSB培养基中培养的培养物中,链球菌rplK(DeltaPALG)产生的棒酸水平降低(与野生型相比为15-26%)和头霉素C(40-50%)。产量下降的原因分别是头孢霉素和克拉维酸生物合成的调节基因ccaR和claR以及cefD和ceaS2基因的转录受损。 ceaS2编码羧乙基精氨酸合酶(CEAS),棒酸生物合成的前体承诺酶的表达在此突变体中受到特别影响。在野生型菌株中,多磷酸化核苷酸在SA培养中的生长达到36-48 h达到峰值,而头孢霉素和棒酸基因的表达早于ppGpp的升高出现了12-24 h,这表明在pGpp的峰之间没有严格的相关性。 ppGpp和克拉维酸和头霉素C生物合成的转录开始。 rplK(DeltaPALG)突变对ceaS2和调控性ccaR和claR基因表达的开始具有强烈影响,并且与ppGpp水平缺乏相关性,表明这些基因的转录开始受到cDNA构象改变的调节。 L11的N末端区域可能是通过与新生肽释放因子和RelA相互作用而产生的。

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