首页> 外文学位 >Proteomic analysis of Pseudomonas putida F1 during growth on toluene-phenol mixtures.
【24h】

Proteomic analysis of Pseudomonas putida F1 during growth on toluene-phenol mixtures.

机译:假单胞菌假单胞菌F1在甲苯-苯酚混合物上生长期间的蛋白质组学分析。

获取原文
获取原文并翻译 | 示例

摘要

In both natural and engineered environments, microorganisms grow on mixtures of organics. However, little is known about microbial growth on mixtures, especially in the context of biodegradation. For example, previous research showed that the biodegradation kinetics of Pseudomonas putida F1 growing on mixtures of toluene and phenol were difficult to predict, despite the fact that the metabolic pathway for these substrates is the same.; To investigate the physiological effects of the toluene-phenol mixtures on the growth of P. putida F1, a proteomics approach was utilized. An optimal proteome analysis procedure was developed and the proteomes of Pseudomonas putida F1 grown on either a single substrate (toluene or phenol) or a toluene-phenol mixture were analyzed by two-dimensional polyacrylamide gel electrophoresis. Three groups of proteins (Group T, P, and M), which were differentially produced when the bacterium grew on toluene, phenol, or the toluene-phenol mixture, respectively, were categorized by two strict criteria: reproducibility and uniqueness.; Based on the proteome analysis, selected Group T, P, and M proteins were subjected to N-terminal sequencing, and mass spectrometry, and results of these analyses were used in searches of the protein identities.; Two proteins were identified: acyl carrier protein (ACP) and β-ketoadipate:succinyl CoA transferase. The function of ACP, an essential protein in the biosynthesis of fatty acids, triggered the investigation of the compositional changes in the phospholipid fatty acids of the cellular membrane. The phospholipid fatty acid composition was found to dramatically change depending on the growth substrate(s). These membrane compositional changes during the biodegradation of the toluene-phenol mixture were used to form the hypothesis that the presence of toluene altered the structure of cellular membrane in favor of toluene transport and inhibited the transport of phenol into the cell. Once the cell consumed toluene, the membrane structure changed to be favorable to phenol transport across the cell membrane.; To consider more diverse contaminant mixtures, the growth of P. putida F1 on mixtures of toluene-phenol and two different heavy metals was also examined. The bacterium displayed better tolerance to cadmium than to chromate during growth on toluene, phenol, and their mixture. The metal tolerance of the bacterium remained at a similar level regardless of the substrate. Heavy metals substantially inhibited the cell growth rate on all substrates and the inhibitory effect was also reflected in decreased cell growth yields. (Abstract shortened by UMI.)
机译:在自然环境和工程环境中,微生物都在有机物的混合物上生长。然而,关于微生物在混合物上的生长知之甚少,尤其是在生物降解的情况下。例如,先前的研究表明,尽管这些底物的代谢途径相同,但很难预测在甲苯和苯酚混合物上生长的<斜体>假单胞菌 F1的生物降解动力学。研究甲苯-苯酚混合物对 P生长的生理影响。蛋白质组学方法使用了Putida F1。建立了最佳蛋白质组分析程序,并通过二维聚丙烯酰胺凝胶电泳分析了在单个底物(甲苯或苯酚)或甲苯-苯酚混合物上生长的恶臭假单胞菌 F1的蛋白质组。当细菌分别在甲苯,苯酚或甲苯-苯酚混合物上生长时,分别产生了三类蛋白质(T,P和M组),该蛋白质分为两个严格标准:可再现性和唯一性。基于蛋白质组学分析,对选定的T,P和M组蛋白质进行N端测序和质谱分析,并将这些分析结果用于蛋白质身份搜索。鉴定出两种蛋白:酰基载体蛋白(ACP)和β-酮己二酸酯:琥珀酰CoA转移酶。 ACP的功能是脂肪酸生物合成中必不可少的蛋白质,它引发了对细胞膜磷脂脂肪酸组成变化的研究。发现磷脂脂肪酸组成根据生长底物而急剧变化。甲苯-苯酚混合物生物降解过程中的这些膜组成变化可用于以下假设:甲苯的存在改变了细胞膜的结构,有利于甲苯的运输并抑制了苯酚向细胞内的运输。一旦细胞消耗了甲苯,膜结构就会发生变化,从而有利于苯酚跨细胞膜的运输。为了考虑更多不同的污染物混合物,还研究了恶臭假单胞菌 F1在甲苯酚和两种不同重金属的混合物上的生长。在甲苯,苯酚及其混合物上生长期间,该细菌对镉的耐受性优于铬酸盐。不管底物如何,细菌的金属耐受性都保持在相似的水平。重金属基本上抑制了所有底物上的细胞生长速率,并且抑制作用还反映在降低的细胞生长产量上。 (摘要由UMI缩短。)

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号