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Delineation of Key Amino Acid Side Chains and Peptide Domains for Antimicrobial Properties of Divercin V41 a Pediocin-Like Bacteriocin Secreted by Carnobacterium divergens V41

机译:Divercin V41抗菌肽关键分子侧链和肽域的描述Divercin V41是一种由分枝杆菌V41分泌的类似Pediocin的细菌素。

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摘要

Divercin V41 (DV41) is a class IIa bacteriocin produced by Carnobacterium divergens V41. This antilisterial peptide is homologous to pediocin PA-1 and contains two disulfide bonds. To establish the structure-activity relationships of this specific family of bacteriocin, chemical modifications and enzymatic hydrolysis were performed on DV41. Alteration of the net charge of this cationic bacteriocin by succinylation and acetylation revealed that, in a certain range, the electrostatic interactions were surprisingly not necessary for the activity of DV41. Cleavage of DV41 by endoproteinase Asp-N released two fragments N1[1–17] and N2[18–43] corresponding to the conserved hydrophilic N-terminal and the variable hydrophobic C-terminal sequences, respectively. Inhibitory assays showed that only the C-terminal fragment was active, and after trypsin cleavage at Lys42 or disulfide reduction it lost its inhibitory activity. These results suggested that both hydrophobicity and folding imposed by the Cys25-Cys43 disulfide bond were essential for antilisterial activity of the C-terminal hydrophobic peptide. Chemical oxidation of tryptophan residues by N-bromosuccinimide demonstrated that these residues were crucial for inhibitory activity since modification of any one of them rendered DV41 inactive. On the contrary, only the modification of all the three tyrosine residues caused a total loss of antilisterial activity. These latter results strengthened previous results suggesting that the N-terminal domain containing the YGNGV consensus sequence was not involved in the binding of DV41 to a potential specific receptor on listerial cells.
机译:Divercin V41(DV41)是由Carnobacterium divergens V41生产的IIa类细菌素。该抗李斯特菌肽与pediocin PA-1同源,并含有两个二硫键。为了建立该细菌素这一特定家族的构效关系,对DV41进行了化学修饰和酶促水解。通过琥珀酰化和乙酰化作用来改变这种阳离子细菌素的净电荷表明,在一定范围内,静电相互作用对于DV41的活性而言是不必要的。内蛋白酶Asp-N裂解DV41释放出两个片段N1 [1-17]和N2 [18-43],分别对应于保守的亲水性N端和可变的疏水性C端。抑制分析表明,只有C末端片段是有活性的,胰蛋白酶在Lys42处裂解或二硫键还原后失去了抑制活性。这些结果表明,Cys25-Cys43二硫键施加的疏水性和折叠对于C端疏水肽的抗李斯特菌活性都是必不可少的。 N-溴代琥珀酰亚胺对色氨酸残基的化学氧化表明,这些残基对于抑制活性至关重要,因为其中任何一个的修饰都使DV41失活。相反,仅修饰所有三个酪氨酸残基会完全丧失抗李斯特菌活性。这些后面的结果加强了先前的结果,表明含有YGNGV共有序列的N末端结构域不参与DV41与利斯特氏菌细胞上潜在潜在受体的结合。

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