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Study of genes relating to degradation of aromatic compounds and carbon metabolism in Mycobacterium sp. strain KMS.

机译:分枝杆菌属中与芳香族化合物降解和碳代谢有关的基因的研究。 KMS菌株。

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摘要

Polycyclic aromatic hydrocarbons, produced by anthropological and natural activities, are hazardous through formation of oxidative radicals and DNA adducts. Growth of Mycobacterium sp. strain KMS, isolated from a contaminated soil, on the model hydrocarbon pyrene induced specific proteins. My work extends the study of isolate KMS to the gene level to understand the pathways and regulation of pyrene utilization.;Genes encoding pyrene-induced proteins were clustered on a 72 kb section on the KMS chromosome but some also were duplicated on plasmids. Skewed GC content and presence of integrase and transposase genes suggested horizontal transfer of pyrene-degrading gene islands that also were found with high conservation in five other pyrene-degrading Mycobacterium isolates. Transcript analysis found both plasmid and chromosomal genes were induced by pyrene. These processes may enhance the survival of KMS in hydrocarbon-contaminated soils when other carbon sources are limited.;KMS also grew on benzoate, confirming the functionality of an operon containing genes distinct from those in other benzoate-degrading bacteria. Growth on benzoate but not on pyrene induced a gene, benA, encoding a benzoate dioxygenase &agr;-subunit, but not the pyrene-induced nidA encoding a pyrene dioxygenase &agr;-subunit; the differential induction correlated with differences in promoter sequences.;Diauxic growth occurred when pyrene cultures were amended with benzoate or acetate, succinate, or fructose, and paralleled delayed expression of nidA. Single phase growth and normal expression of benA was observed for benzoate single and mixed cultures. The nidA promoters had potential cAMP-CRP binding sites, suggesting that cAMP could be involved in carbon repression of pyrene metabolism.;Growth on benzoate and pyrene requires gluconeogenesis. Intermediary metabolism in isolate KMS involves expression from genes encoding a novel malate:quinone oxidoreductase and glyoxylate shunt enzymes. Generation of C3 structures involves transcription of genes encoding malic enzyme, phosphoenolpyruvate carboxykinase, and phosphoenolpyruvate synthase. Carbon source modified the transcription patterns for these genes.;My findings are the first to show duplication of pyrene-degrading genes on the chromosome and plasmids in Mycobacterium isolates and expression from a unique benzoate-degrading operon. I clarified the routes for intermediary metabolism leading to gluconeogenesis and established a potential role for cAMP-mediated catabolite repression of pyrene utilization.
机译:人类学和自然活动产生的多环芳烃通过形成氧化自由基和DNA加合物而有害。分枝杆菌的生长。从受污染的土壤中分离出的KMS菌株在模型中由烃specific诱导的特定蛋白。我的工作将分离KMS的研究扩展到基因水平,以了解of的利用途径和调控。编码pyr诱导的蛋白的基因聚集在KMS染色体的72 kb片段上,但也有一些在质粒上重复。偏斜的GC含量以及整合酶和转座酶基因的存在表明gene降解基因岛的水平转移,这在其他五种pyr降解分枝杆菌分离物中也具有较高的保守性。转录分析发现质粒和染色体基因均被pyr诱导。当其他碳源受到限制时,这些过程可能会提高KMS在碳氢化合物污染的土壤中的存活率。; KMS还可以在苯甲酸盐上生长,从而证实了操纵子所含基因的功能不同于其他降解苯甲酸盐的细菌。在苯甲酸盐上而不在pyr上的生长诱导了编码苯甲酸酯双加氧酶α-亚基的基因benA,而不是the诱导的编码a双加氧酶α-亚基的nidA。当pyr培养物用苯甲酸酯或乙酸酯,琥珀酸酯或果糖修饰,并平行延迟了nidA的表达时,双生生长发生。对于苯甲酸酯单培养物和混合培养物,观察到benA的单相生长和正常表达。 nidA启动子具有潜在的cAMP-CRP结合位点,提示cAMP可能参与carbon代谢的碳阻抑。苯甲酸盐和pyr的生长需要糖异生。分离株KMS中的中间代谢涉及从编码新的苹果酸:醌氧化还原酶和乙醛酸旁路酶的基因表达。 C3结构的产生涉及编码苹果酸酶,磷酸烯醇丙酮酸羧化激酶和磷酸烯醇丙酮酸合酶的基因的转录。碳源改变了这些基因的转录方式。我的发现是第一个显示染色体上的pyr降解基因和分枝杆菌分离物中的质粒的重复,以及独特的苯甲酸酯降解操纵子的表达。我阐明了导致糖异生的中间代谢途径,并确定了cAMP介导的分解代谢物阻遏pyr利用的潜在作用。

著录项

  • 作者

    Zhang, Chun.;

  • 作者单位

    Utah State University.;

  • 授予单位 Utah State University.;
  • 学科 Biology General.;Environmental Sciences.;Biology Microbiology.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 285 p.
  • 总页数 285
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:42:18

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