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外膜蛋白Omp35影响嗜冷栖热袍菌MR-1对Fe(III)、硝酸盐和富马酸盐的还原作用。

The outer membrane protein Omp35 affects the reduction of Fe(III), nitrate, and fumarate by Shewanella oneidensis MR-1.

作者信息

Maier Tamara M, Myers Charles R

机构信息

Department of Pharmacology and Toxicology, Medical College of Wisconsin, Milwaukee, 53226, USA.

出版信息

BMC Microbiol. 2004 Jun 22;4:23. doi: 10.1186/1471-2180-4-23.

Abstract

BACKGROUND

Shewanella oneidensis MR-1 uses several electron acceptors to support anaerobic respiration including insoluble species such as iron(III) and manganese(IV) oxides, and soluble species such as nitrate, fumarate, dimethylsulfoxide and many others. MR-1 has complex branched electron transport chains that include components in the cytoplasmic membrane, periplasm, and outer membrane (OM). Previous studies have implicated a role for anaerobically upregulated OM electron transport components in the use of insoluble electron acceptors, and have suggested that other OM components may also contribute to insoluble electron acceptor use. In this study, the role for an anaerobically upregulated 35-kDa OM protein (Omp35) in the use of anaerobic electron acceptors was explored.

RESULTS

Omp35 was purified from the OM of anaerobically grown cells, the gene encoding Omp35 was identified, and an omp35 null mutant (OMP35-1) was isolated and characterized. Although OMP35-1 grew on all electron acceptors tested, a significant lag was seen when grown on fumarate, nitrate, and Fe(III). Complementation studies confirmed that the phenotype of OMP35-1 was due to the loss of Omp35. Despite its requirement for wild-type rates of electron acceptor use, analysis of Omp35 protein and predicted sequence did not identify any electron transport moieties or predicted motifs. OMP35-1 had normal levels and distribution of known electron transport components including quinones, cytochromes, and fumarate reductase. Omp35 is related to putative porins from MR-1 and S. frigidimarina as well as to the PorA porin from Neisseria meningitidis. Subcellular fraction analysis confirmed that Omp35 is an OM protein. The seven-fold anaerobic upregulation of Omp35 is mediated post-transcriptionally.

CONCLUSION

Omp35 is a putative porin in the OM of MR-1 that is markedly upregulated anaerobically by a post-transcriptional mechanism. Omp35 is required for normal rates of growth on Fe(III), fumarate, and nitrate, but its absence has no effect on the use of other electron acceptors. Omp35 does not contain obvious electron transport moieties, and its absence does not alter the amounts or distribution of other known electron transport components including quinones and cytochromes. The effects of Omp35 on anaerobic electron acceptor use are therefore likely indirect. The results demonstrate the ability of non-electron transport proteins to influence anaerobic respiratory phenotypes.

摘要

背景

奥奈达希瓦氏菌MR-1利用多种电子受体来支持厌氧呼吸,包括不溶性物质,如铁(III)和锰(IV)氧化物,以及可溶性物质,如硝酸盐、富马酸盐、二甲基亚砜等许多其他物质。MR-1具有复杂的分支电子传递链,包括位于细胞质膜、周质和外膜(OM)中的组分。先前的研究表明,厌氧上调的外膜电子传递组分在利用不溶性电子受体方面发挥作用,并表明其他外膜组分也可能有助于不溶性电子受体的利用。在本研究中,探索了一种厌氧上调的35 kDa外膜蛋白(Omp35)在利用厌氧电子受体中的作用。

结果

从厌氧生长细胞的外膜中纯化了Omp35,鉴定了编码Omp35的基因,并分离和表征了omp35基因敲除突变体(OMP35-1)。尽管OMP35-1能在所有测试的电子受体上生长,但在以富马酸盐、硝酸盐和Fe(III)为电子受体生长时,出现了明显的延迟。互补研究证实,OMP35-1的表型是由于Omp35的缺失所致。尽管其对电子受体利用的野生型速率有需求,但对Omp35蛋白和预测序列的分析未发现任何电子传递部分或预测基序。OMP35-1具有正常水平和分布的已知电子传递组分,包括醌、细胞色素和富马酸还原酶。Omp35与MR-1和嗜冷希瓦氏菌的推定孔蛋白以及脑膜炎奈瑟菌的PorA孔蛋白相关。亚细胞分级分析证实Omp35是一种外膜蛋白。Omp35在厌氧条件下的七倍上调是由转录后机制介导的。

结论

Omp35是MR-1外膜中的一种推定孔蛋白,通过转录后机制在厌氧条件下显著上调。Omp35是在以Fe(III)、富马酸盐和硝酸盐为电子受体时正常生长速率所必需的,但它的缺失对其他电子受体的利用没有影响。Omp35不包含明显的电子传递部分,其缺失也不会改变其他已知电子传递组分(包括醌和细胞色素)的数量或分布。因此,Omp35对厌氧电子受体利用的影响可能是间接的。结果证明了非电子传递蛋白影响厌氧呼吸表型的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3732/459216/30989f5b2e3e/1471-2180-4-23-1.jpg

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