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一种由非典型II型分泌系统分泌的假定多铜蛋白,参与嗜硫地杆菌中不溶性电子受体的还原。

A putative multicopper protein secreted by an atypical type II secretion system involved in the reduction of insoluble electron acceptors in Geobacter sulfurreducens.

作者信息

Mehta Teena, Childers Susan E, Glaven Richard, Lovley Derek R, Mester Tünde

机构信息

Department of Microbiology, Morrill IV North, University of Massachusetts, Amherst, MA 01003, USA.

出版信息

Microbiology (Reading). 2006 Aug;152(Pt 8):2257-2264. doi: 10.1099/mic.0.28864-0.

Abstract

Extracellular electron transfer onto Fe(III) oxides in Geobacter sulfurreducens is considered to require proteins that must be exported to the outer surface of the cell. In order to investigate this, the putative gene for OxpG, the pseudopilin involved in a type II general secretion pathway of Gram-negative bacteria, was deleted. The mutant was unable to grow with insoluble Fe(III) oxide as the electron acceptor. Growth on soluble Fe(III) was not affected. An analysis of proteins that accumulated in the periplasm of the oxpG mutant, but not in the wild-type, led to the identification of a secreted protein, OmpB. OmpB is predicted to be a multicopper protein, with highest homology to the manganese oxidase, MofA, from Leptothrix discophora. OmpB contains a potential Fe(III)-binding site and a fibronectin type III domain, suggesting a possible role for this protein in accessing Fe(III) oxides. OmpB was localized to the membrane fraction of G. sulfurreducens and in the supernatant of growing cultures, consistent with the type II secretion system exporting OmpB. A mutant in which ompB was deleted had the same phenotype as the oxpG mutant, suggesting that the failure to export OmpB was responsible for the inability of the oxpG-deficient mutant to reduce Fe(III) oxide. This is the first report that proposes a role for a multicopper oxidase-like protein in an anaerobic organism. These results further emphasize the importance of outer-membrane proteins in Fe(III) oxide reduction and suggest that outer-membrane proteins other than c-type cytochromes are required for Fe(III) oxide reduction in Geobacter species.

摘要

在硫还原地杆菌中,细胞外电子传递到三价铁氧化物上被认为需要必须输出到细胞外表面的蛋白质。为了对此进行研究,参与革兰氏阴性菌II型一般分泌途径的假菌毛蛋白OxpG的推定基因被删除。该突变体无法以不溶性三价铁氧化物作为电子受体生长。在可溶性三价铁上的生长不受影响。对在oxpG突变体周质中积累但在野生型中不积累的蛋白质进行分析,鉴定出一种分泌蛋白OmpB。OmpB预计是一种多铜蛋白,与来自盘绕纤发菌的锰氧化酶MofA具有最高同源性。OmpB包含一个潜在的三价铁结合位点和一个纤连蛋白III型结构域,表明该蛋白在接触三价铁氧化物中可能发挥作用。OmpB定位于硫还原地杆菌的膜部分以及生长培养物的上清液中,这与II型分泌系统输出OmpB一致。删除ompB的突变体具有与oxpG突变体相同的表型,表明无法输出OmpB是oxpG缺陷型突变体无法还原三价铁氧化物的原因。这是首次报道提出一种多铜氧化酶样蛋白在厌氧生物中的作用。这些结果进一步强调了外膜蛋白在三价铁氧化物还原中的重要性,并表明除c型细胞色素外的外膜蛋白是硫还原地杆菌物种还原三价铁氧化物所必需的。

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