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Soluble expression and purification of a crab antimicrobial peptide scygonadin in different expression plasmids and analysis of its antimicrobial activity

机译:蟹抗菌肽鞘氨醇在不同表达质粒中的可溶性表达和纯化及抗菌活性分析

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摘要

Scygonadin is an anionic antimicrobial peptide recently identified from the seminal plasma of Scylla serrata. To gain more detailed information on its antimicrobial activity, scygonadin mature peptide was expressed in Escherichia coli in order to obtain a large quantity of biologically active product. An approximately 43 kDa fusion protein CKS-scygonadin was obtained in a highly stable and soluble form. The soluble component of the fusion CKS-scygonadin was purified by immobilized metal affinity chromatography (IMAC). A single 11 kDa recombinant scygonadin was cleaved from CKS-scygonadin and purified from the cleavage mixture using an affinity chromatography column with a yield of 10.6 mg/L. Alternatively, a recombinant scygonadin was purified from pET28-scygonadin by one-step Ni2+ affinity chromatography and 65.9 mg/L pure recombinant scygonadin was obtained which was higher than that purified from pTrc-CKS/scygonadin in bacteria culture. The recombinant scygonadin was confirmed using SDS-PAGE analysis and MS-fingerprinting. Both recombinant products of scygonadin from different expressed plasmids showed the activity against both Gram-positive and Gram-negative bacteria, but no activity against yeast and fungi tested. The kinetic studies showed that the recombinant scygonadin was strong active against Staphylococcus aureus and the killing of S. aureus appeared time and dose dependent. Considering the quantity of recombinant product and the applicability of purification, the pET28-scygonadin expression system is a better choice to produce large quantities of recombinant scygonadin for commercial use in future. This is the first report on the heterologous expression of antimicrobial peptide scygonadin in E coli. (C) 2009 Elsevier Inc. All rights reserved.
机译:Scygonadin是一种最近从Sylla serrata的精浆中鉴定出的阴离子抗菌肽。为了获得有关其抗菌活性的更多详细信息,在大肠杆菌中表达了鞘氨醇成熟肽,以便获得大量的生物活性产物。以高度稳定和可溶的形式获得了约43kDa的融合蛋白CKS-scygonadin。通过固定的金属亲和色谱法(IMAC)纯化融合的CKS-scygonadin的可溶性组分。从CKS-scygonadin切割单个11 kDa重组scygonadin,并使用亲和色谱柱从切割混合物中纯化,收率为10.6 mg / L。或者,通过一步Ni 2+亲和层析从pET28-scygonadin中纯化出重组Scygonadin,获得了65.9 mg / L的纯重组Scygonadin,其纯度高于在细菌培养物中从pTrc-CKS / Scygonadin中纯化得到的。使用SDS-PAGE分析和MS指纹图谱确认了重组鞘氨醇。来自不同表达质粒的Scygonadin的两种重组产物均显示出对革兰氏阳性和革兰氏阴性细菌的活性,但对测试的酵母和真菌没有活性。动力学研究表明重组鞘氨醇对金黄色葡萄球菌具有很强的活性,对金黄色葡萄球菌的杀灭表现出时间和剂量依赖性。考虑到重组产物的数量和纯化的适用性,pET28-scygonadin表达系统是将来生产大量商业用途的重组scygonadin的较好选择。这是关于抗菌肽鞘氨醇在大肠杆菌中异源表达的首次报道。 (C)2009 Elsevier Inc.保留所有权利。

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