Sharma Surbhi, Sundaram C S, Luthra Pratibha M, Singh Yogendra, Sirdeshmukh Ravi, Gade W N
Dr. B.R. Ambedkar Center for Biomedical Research, Delhi University(ACBR), Delhi 110007, India.
J Biotechnol. 2006 Nov 10;126(3):374-82. doi: 10.1016/j.jbiotec.2006.04.032. Epub 2006 Jun 19.
The genus Pseudomonas is a group of gram-negative, motile, rod-shaped bacteria known for their metabolic versatility. One of the species is Pseudomonas fluorescens, which has an efficient system for detoxification of industrial waste. Other aspects include, catabolic versatility, excellent root colonizing abilities and capacity to produce a wide range of antifungal metabolites. They are also known for their resistance and survival in the presence of several organic and inorganic pollutants. P. fluorescens has also been isolated from metal polluted water and soils but the elucidation of proteins responsible for its survival is still not clear. The aim of the study was to elucidate the differential protein expression of this bacterium when exposed to heavy metal stress, using two-dimensional electrophoresis. The proteins spo VG and enolase showed upregulation during the bacterial exposure to lead and copper. Hypothetical protein showed downregulation when bacterium was exposed to cobalt. Some proteins like xylosyltransferase, ORF 18 phage phi KZ, OMP H1 and translational elongation factor EF-Tu appeared only during their exposure to cobalt. These were absent in the control condition. Analysis of the differentially expressed proteins as well as the newly synthesized proteins along with the results obtained growth and enzyme activity indicate the involvement of all these factors in the survival of this organism in the presence of heavy metals.
假单胞菌属是一组革兰氏阴性、能运动的杆状细菌,以其代谢多样性而闻名。其中一个物种是荧光假单胞菌,它具有高效的工业废物解毒系统。其他方面包括分解代谢的多样性、出色的根系定殖能力以及产生多种抗真菌代谢物的能力。它们还以在多种有机和无机污染物存在的情况下具有抗性和生存能力而闻名。荧光假单胞菌也已从受金属污染的水和土壤中分离出来,但对其生存所涉及蛋白质的阐明仍不清楚。该研究的目的是使用二维电泳阐明这种细菌在暴露于重金属胁迫时的差异蛋白质表达。在细菌暴露于铅和铜的过程中,spo VG和烯醇化酶蛋白出现上调。当细菌暴露于钴时,假定蛋白出现下调。一些蛋白质,如木糖基转移酶、ORF 18噬菌体phi KZ、外膜蛋白H1和翻译延伸因子EF - Tu仅在它们暴露于钴时出现。在对照条件下这些蛋白不存在。对差异表达蛋白以及新合成蛋白的分析,连同生长和酶活性的结果表明,所有这些因素都参与了该生物体在重金属存在下的生存。