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Insights into Structure-Activity Relationships in the C-Terminal Region of Divercin V41 a Class IIa Bacteriocin with High-Level Antilisterial Activity

机译:深入探讨Divercin V41(IIa类细菌高水平抗李斯特菌活性)C末端区域的结构活性关系

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摘要

Divercin V41 (DvnV41) is a class IIa bacteriocin with potent antilisterial activity isolated from Carnobacterium divergens V41. Previously, we expressed from a synthetic gene, in Escherichia coli Origami, a recombinant DvnV41 designated DvnRV41, which possesses four additional amino acids (AMDP) in the N-terminal region that result from enzymatic cleavage and retains the initial DvnV41 activity. To unravel the relationship between the structure of DvnRV41 and its particularly elevated activity, we produced by site-directed mutagenesis eight variants in which a single amino acid replacement was specifically introduced into the sequence. The point mutations were designed to change either conserved residues in class IIa bacteriocins or residues specific to DvnV41 located mainly in the C-terminal region. The fusion proteins were purified from the cytosoluble fractions by immobilized affinity chromatography. DvnRV41 and its variants were released from the fusion proteins by enzymatic cleavage, using enterokinase. The purity of DvnRV41 and of the variants was checked by sodium dodecyl sulfate-polyacrylamide gel electrophoresis, high-performance liquid chromatography, and mass spectrometry. The antibacterial activity of DvnRV41 and its variants was assessed using different indicator strains, including Listeria monocytogenes EGDe and Enterococcus faecalis JH2-2. The activity of all of the variants appeared to be less than the activity of DvnRV41. The decrease in activity did not appear to be related to a global conformational change, as determined by circular dichroism. Overall, the variants of DvnRV41 produced in the present study provide interesting insights into structure-activity relationships of class IIa bacteriocins.
机译:Divercin V41(DvnV41)是一种IIa类细菌素,具有有效的抗李斯特菌活性,从divernos divergens V41中分离出来。以前,我们在大肠杆菌折纸中通过合成基因表达了一种称为DvnRV41的重组DvnV41,该重组DvnV41在N端区域具有四个额外的氨基酸(AMDP),这些氨基酸是酶促切割产生的,并保留了最初的DvnV41活性。为了阐明DvnRV41的结构与其特别提高的活性之间的关系,我们通过定点诱变产生了8个变体,其中将单个氨基酸替换专门引入了序列。设计点突变以改变IIa类细菌素中的保守残基或主要位于C端区域的DvnV41特异性残基。通过固定的亲和层析从细胞可溶性级分中纯化融合蛋白。使用肠激酶,通过酶切将DvnRV41及其变体从融合蛋白中释放出来。通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳,高效液相色谱和质谱法检查DvnRV41及其变体的纯度。使用不同的指示菌株,包括单核细胞增生性李斯特菌EGDe和粪肠球菌JH2-2,评估了DvnRV41及其变体的抗菌活性。所有变体的活性似乎都小于DvnRV41的活性。如圆二色性所确定的那样,活性的降低似乎与总体构象变化无关。总体而言,本研究中产生的DvnRV41变体为IIa类细菌素的结构活性关系提供了有趣的见解。

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