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细胞色素c成熟操纵子参与恶臭假单胞菌GB-1中的锰氧化过程。

The cytochrome c maturation operon is involved in manganese oxidation in Pseudomonas putida GB-1.

作者信息

de Vrind J P, Brouwers G J, Corstjens P L, den Dulk J, de Vrind-de Jong E W

机构信息

Leiden Institute of Chemistry, Gorlaeus Laboratories, Leiden University, 2300 RA Leiden, The Netherlands.

出版信息

Appl Environ Microbiol. 1998 Oct;64(10):3556-62. doi: 10.1128/AEM.64.10.3556-3562.1998.

Abstract

A Pseudomonas putida strain, strain GB-1, oxidizes Mn2+ to Mn oxide in the early stationary growth phase. It also secretes a siderophore (identified as pyoverdine) when it is subjected to iron limitation. After transposon (Tn5) mutagenesis several classes of mutants with differences in Mn2+ oxidation and/or secretion of the Mn2+-oxidizing activity were identified. Preliminary analysis of the Tn5 insertion site in one of the nonoxidizing mutants suggested that a multicopper oxidase-related enzyme is involved in Mn2+ oxidation. The insertion site in another mutant was preliminarily identified as a gene involved in the general protein secretion pathway. Two mutants defective in Mn2+-oxidizing activity also secreted porphyrins into the medium and appeared to be derepressed for pyoverdine production. These strains were chosen for detailed analysis. Both mutants were shown to contain Tn5 insertions in the ccmF gene, which is part of the cytochrome c maturation operon. They were cytochrome oxidase negative and did not contain c-type cytochromes. Complementation with part of the ccm operon isolated from the wild type restored the phenotype of the parent strain. These results indicate that a functional ccm operon is required for Mn2+ oxidation in P. putida GB-1. A possible relationship between porphyrin secretion resulting from the ccm mutation and stimulation of pyoverdine production is discussed.

摘要

恶臭假单胞菌GB-1菌株在生长稳定期早期可将Mn2+氧化为锰氧化物。当该菌株处于铁限制条件下时,它还会分泌一种铁载体(鉴定为绿脓菌素)。经过转座子(Tn5)诱变后,鉴定出了几类在Mn2+氧化和/或Mn2+氧化活性分泌方面存在差异的突变体。对其中一个非氧化突变体中Tn5插入位点的初步分析表明,一种与多铜氧化酶相关的酶参与了Mn2+的氧化过程。另一个突变体中的插入位点初步鉴定为一个参与一般蛋白质分泌途径的基因。两个Mn2+氧化活性缺陷的突变体还将卟啉分泌到培养基中,并且似乎对绿脓菌素的产生去阻遏。选择这些菌株进行详细分析。结果表明,这两个突变体在ccmF基因中均含有Tn5插入,该基因是细胞色素c成熟操纵子的一部分。它们的细胞色素氧化酶呈阴性,且不含c型细胞色素。用从野生型中分离得到的部分ccm操纵子进行互补,可恢复亲本菌株的表型。这些结果表明,恶臭假单胞菌GB-1中Mn2+的氧化需要一个功能正常的ccm操纵子。本文还讨论了由ccm突变导致的卟啉分泌与绿脓菌素产生刺激之间的可能关系。

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