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枯草芽孢杆菌的dppA基因编码一种新的D-氨基肽酶。

The dppA gene of Bacillus subtilis encodes a new D-aminopeptidase.

作者信息

Cheggour A, Fanuel L, Duez C, Joris B, Bouillenne F, Devreese B, Van Driessche G, Van Beeumen J, Frère J M, Goffin C

机构信息

Centre for Protein Engineering, University of Liège, Institut de Chimie B6, Sart Tilman, 4000 Liège, Belgium.

出版信息

Mol Microbiol. 2000 Nov;38(3):504-13. doi: 10.1046/j.1365-2958.2000.02117.x.

Abstract

Different strains of Bacillus were screened for their ability to hydrolyse D-alanyl-p-nitroanilide. Activity was detected in Bacillus pumilus, Bacillus brevis, Bacillus licheniformis 749I and Bacillus subtilis 168. The last strain was the best producer and was selected for the production and purification of the enzyme. The determination of the N-terminal sequence identified the enzyme as the product of the dppA gene (previously named dciAA) belonging to the dipeptide ABC transport (dpp) operon expressed early during sporulation. Open reading frames (ORFs) encoding putative related proteins were found in the genomes of a variety of Archaea and both sporulating and non-sporulating bacteria. The enzyme behaves as a D-aminopeptidase and represents the prototype of a new peptidase family. Among the tested substrates, the highest activities were found with D-Ala-D-Ala and D-Ala-Gly-Gly. The active enzyme behaves as an octamer of identical 30 kDa subunits. It exhibits a broad pH optimum, extending between pH 9 and 11. It is reversibly inhibited in the presence of Zn2+ chelators, and the sequence comparisons highlight the conservation of potential Zn-binding residues. As it has been shown by others that null mutations in the dpp operon do not inhibit spore formation, the physiological role of DppA is probably an adaptation to nutrient deficiency.

摘要

对不同的芽孢杆菌菌株进行筛选,以检测其水解D-丙氨酰-对硝基苯胺的能力。在短小芽孢杆菌、短短芽孢杆菌、地衣芽孢杆菌749I和枯草芽孢杆菌168中检测到了活性。最后一个菌株是最佳生产者,被选用于该酶的生产和纯化。N端序列的测定确定该酶是属于二肽ABC转运(dpp)操纵子的dppA基因(以前称为dciAA)的产物,该操纵子在芽孢形成早期表达。在多种古细菌以及芽孢形成和非芽孢形成细菌的基因组中发现了编码假定相关蛋白的开放阅读框(ORF)。该酶表现为D-氨基肽酶,代表一个新的肽酶家族的原型。在测试的底物中,发现对D-Ala-D-Ala和D-Ala-Gly-Gly的活性最高。活性酶表现为相同的30 kDa亚基的八聚体。它表现出较宽的最适pH值,在pH 9至11之间。在存在Zn2+螯合剂的情况下它会受到可逆抑制,序列比较突出了潜在锌结合残基的保守性。正如其他人所表明的,dpp操纵子中的无效突变不会抑制孢子形成,DppA的生理作用可能是对营养缺乏的一种适应。

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