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使用液相色谱-质谱联用/质谱联用(LC-MS/MS)对假产碱假单胞菌CECT5344响应工业含氰废水进行定量蛋白质组分析。

Quantitative proteomic analysis of Pseudomonas pseudoalcaligenes CECT5344 in response to industrial cyanide-containing wastewaters using Liquid Chromatography-Mass Spectrometry/Mass Spectrometry (LC-MS/MS).

作者信息

Ibáñez María Isabel, Cabello Purificación, Luque-Almagro Víctor Manuel, Sáez Lara P, Olaya Alfonso, Sánchez de Medina Verónica, Luque de Castro María Dolores, Moreno-Vivián Conrado, Roldán María Dolores

机构信息

Departamento de Bioquímica y Biología Molecular, Edificio Severo Ochoa, Campus de Rabanales, Universidad de Córdoba, Córdoba, Spain.

Departamento de Botánica, Ecología y Fisiología Vegetal, Edificio Celestino Mutis, Campus de Rabanales, Universidad de Córdoba, Córdoba, Spain.

出版信息

PLoS One. 2017 Mar 2;12(3):e0172908. doi: 10.1371/journal.pone.0172908. eCollection 2017.

Abstract

Biological treatments to degrade cyanide are a powerful technology for cyanide removal from industrial wastewaters. It has been previously demonstrated that the alkaliphilic bacterium Pseudomonas pseudoalcaligenes CECT5344 is able to use free cyanide and several metal-cyanide complexes as the sole nitrogen source. In this work, the strain CECT5344 has been used for detoxification of the different chemical forms of cyanide that are present in alkaline wastewaters from the jewelry industry. This liquid residue also contains large concentrations of metals like iron, copper and zinc, making this wastewater even more toxic. To elucidate the molecular mechanisms involved in the bioremediation process, a quantitative proteomic analysis by LC-MS/MS has been carried out in P. pseudoalcaligenes CECT5344 cells grown with the jewelry residue as sole nitrogen source. Different proteins related to cyanide and cyanate assimilation, as well as other proteins involved in transport and resistance to metals were induced by the cyanide-containing jewelry residue. GntR-like regulatory proteins were also induced by this industrial residue and mutational analysis revealed that GntR-like regulatory proteins may play a role in the regulation of cyanide assimilation in P. pseudoalcaligenes CECT5344. The strain CECT5344 has been used in a batch reactor to remove at pH 9 the different forms of cyanide present in industrial wastewaters from the jewelry industry (0.3 g/L, ca. 12 mM total cyanide, including both free cyanide and metal-cyanide complexes). This is the first report describing the biological removal at alkaline pH of such as elevated concentration of cyanide present in a heterogeneous mixture from an industrial source.

摘要

用于降解氰化物的生物处理技术是从工业废水中去除氰化物的强大技术。先前已证明,嗜碱细菌假产碱假单胞菌CECT5344能够利用游离氰化物和几种金属氰化物络合物作为唯一氮源。在这项工作中,菌株CECT5344已被用于对珠宝行业碱性废水中存在的不同化学形式的氰化物进行解毒。这种液体残渣还含有高浓度的铁、铜和锌等金属,使这种废水毒性更大。为了阐明生物修复过程中涉及的分子机制,对以珠宝残渣作为唯一氮源生长的假产碱假单胞菌CECT5344细胞进行了液相色谱-串联质谱法定量蛋白质组分析。与氰化物和氰酸盐同化相关的不同蛋白质,以及其他参与金属转运和抗性的蛋白质,被含氰珠宝残渣诱导产生。GntR样调节蛋白也被这种工业残渣诱导,突变分析表明,GntR样调节蛋白可能在假产碱假单胞菌CECT5344的氰化物同化调节中发挥作用。菌株CECT5344已用于间歇式反应器中,在pH 9的条件下去除珠宝行业工业废水中存在的不同形式的氰化物(0.3 g/L,约12 mM总氰化物,包括游离氰化物和金属氰化物络合物)。这是第一份描述在碱性pH条件下生物去除来自工业源的异质混合物中如此高浓度氰化物的报告。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7913/5333837/07af90c5ce7a/pone.0172908.g001.jpg

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