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锰(II)氧化型和非氧化型玫瑰杆菌属细菌的比较蛋白质组学揭示了一个有效的锰转运系统,但锰(II)诱导的锰氧化酶和抗氧化酶表达极少。

Comparative proteomics of Mn(II)-oxidizing and non-oxidizing Roseobacter clade bacteria reveal an operative manganese transport system but minimal Mn(II)-induced expression of manganese oxidation and antioxidant enzymes.

作者信息

Learman D R, Hansel C M

出版信息

Environ Microbiol Rep. 2014 Oct;6(5):501-9. doi: 10.1111/1758-2229.12164.

Abstract

Manganese (Mn) is an essential nutrient and precipitates as minerals with technological and environmental relevance. To gain a proteomic understanding of how bacteria respond to Mn(II) and its connection to oxidation, a comparative examination of the proteomic response of Mn(II)-oxidizing (Roseobacter sp. AzwK-3b) and non-oxidizing (Ruegeria sp. TM1040) alphaproteobacteria was conducted. Both bacteria show an operative Mn(II) transport system. In the absence of Mn(II), both bacteria have higher expression of proteins that were homologous to SitA and SitB, known proteins in the Mn(II) transport system of other alphaproteobacteria. Overall, each bacterium demonstrated a varied response to Mn(II). Ru. TM1040 had a greater number of proteins differentially expressed in response to Mn(II) and also had a group of proteins related to chemotaxis at higher concentrations of Mn(II), suggesting a potential stress response. While both bacteria are able to generate extracellular superoxide and Mn(II) is a known antioxidant, the presence of Mn(II) did not significantly alter the expression of proteins related to antioxidant activity. Heme peroxidases, previously connected to Mn(II) oxidation, were found in the soluble protein extract of R. AzwK-3b, but only minor differential expression was observed as a function of Mn(II), indicating that their expression was not induced by Mn(II).

摘要

锰(Mn)是一种必需营养素,并以具有技术和环境相关性的矿物质形式沉淀。为了从蛋白质组学角度了解细菌如何响应二价锰(Mn(II))及其与氧化的关系,对氧化Mn(II)的(玫瑰杆菌属AzwK-3b菌株)和非氧化的(吕杰氏菌属TM1040菌株)α-变形菌的蛋白质组响应进行了比较研究。两种细菌都显示出有效的Mn(II)转运系统。在没有Mn(II)的情况下,两种细菌中与SitA和SitB同源的蛋白质表达较高,SitA和SitB是其他α-变形菌的Mn(II)转运系统中的已知蛋白质。总体而言,每种细菌对Mn(II)都表现出不同的反应。吕杰氏菌属TM1040菌株有更多蛋白质因响应Mn(II)而差异表达,并且在较高浓度的Mn(II)下还有一组与趋化作用相关的蛋白质,表明可能存在应激反应。虽然两种细菌都能够产生细胞外超氧化物,并且Mn(II)是一种已知的抗氧化剂,但Mn(II)的存在并未显著改变与抗氧化活性相关的蛋白质的表达。先前与Mn(II)氧化有关的血红素过氧化物酶在AzwK-3b菌株的可溶性蛋白质提取物中被发现,但仅观察到其作为Mn(II)的函数有微小的差异表达,这表明它们的表达不是由Mn(II)诱导的。

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