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从 BSN314 中分离的溶菌酶的纯化、特性及杀菌作用:溶菌酶对革兰氏阳性菌和革兰氏阴性菌的崩解作用。

Purification, Characterization and Bactericidal Action of Lysozyme, Isolated from BSN314: A Disintegrating Effect of Lysozyme on Gram-Positive and Gram-Negative Bacteria.

机构信息

Beijing Advanced Innovation Center for Food Nutrition and Human Health, Beijing Technology & Business University (BTBU), Beijing 100048, China.

School of Light Industry, Beijing Technology & Business University (BTBU), Beijing 100048, China.

出版信息

Molecules. 2023 Jan 20;28(3):1058. doi: 10.3390/molecules28031058.

Abstract

In the present study, lysozyme was purified by the following multi-step methodology: salt (ammonium sulfate) precipitation, dialysis, and ultrafiltration. The lysozyme potential was measured by enzymatic activity after each purification step. However, after ultrafiltration, the resulting material was considered extra purified. It was concentrated in an ultrafiltration centrifuge tube, and the resulting protein/lysozyme was used to determine its bactericidal potential against five bacterial strains, including three gram-positive ( 168, , and ) and two gram-negative ( and ) strains. The results of ZOI and MIC/MBC showed that lysozyme had a higher antimicrobial activity against gram-positive than gram-negative bacterial strains. The results of the antibacterial activity of lysozyme were compared with those of ciprofloxacin (antibiotic). For this purpose, two indices were applied in the present study: antimicrobial index (AMI) and percent activity index (PAI). It was found that the purified lysozyme had a higher antibacterial activity against (AMI/PAI; 1.01/101) and 168 (AMI/PAI; 1.03/103), compared to the antibiotic (ciprofloxacin) used in this study. Atomic force microscopy (AFM) was used to determine the bactericidal action of the lysozyme on the bacterial cell. The purified protein was further processed by gel column chromatography and the eluate was collected, its enzymatic activity was 21.93 U/mL, while the eluate was processed by native-PAGE. By this analysis, the un-denatured protein with enzymatic activity of 40.9 U/mL was obtained. This step shows that the protein (lysozyme) has an even higher enzymatic potential. To determine the specific peptides (in lysozyme) that may cause the bactericidal potential and cell lytic/enzymatic activity, the isolated protein (lysozyme) was further processed by the SDS-PAGE technique. SDS-PAGE analysis revealed different bands with sizes of 34 kDa, 24 kDa, and 10 kDa, respectively. To determine the chemical composition of the peptides, the bands (from SDS-PAGE) were cut, enzymatically digested, desalted, and analyzed by LC-MS (liquid chromatography-mass spectrometry). LC-MS analysis showed that the purified lysozyme had the following composition: the number of proteins in the sample was 56, the number of peptides was 124, and the number of PSMs (peptide spectrum matches) was 309. Among them, two peptides related to lysozyme and bactericidal activities were identified as: A0A1Q9G213 (N-acetylmuramoyl-L-alanine amidase) and A0A1Q9FRD3 (D-alanyl-D-alanine carboxypeptidase). The corresponding protein sequence and nucleic acid sequence were determined by comparison with the database.

摘要

在本研究中,溶菌酶通过以下多步方法进行纯化:盐(硫酸铵)沉淀、透析和超滤。在每个纯化步骤后,通过酶活性测量溶菌酶的潜力。然而,超滤后,所得材料被认为是额外纯化的。它在超滤离心管中浓缩,所得的蛋白质/溶菌酶用于测定其对五种细菌菌株的杀菌潜力,包括三种革兰氏阳性(168、和)和两种革兰氏阴性(和)菌株。抑菌圈(ZOI)和最小抑菌浓度/最小杀菌浓度(MIC/MBC)的结果表明,溶菌酶对革兰氏阳性菌的抗菌活性高于革兰氏阴性菌。溶菌酶的抗菌活性结果与环丙沙星(抗生素)进行了比较。为此,本研究应用了两个指标:抗菌指数(AMI)和活性指数(PAI)。结果发现,与本研究中使用的抗生素(环丙沙星)相比,纯化的溶菌酶对和 168 具有更高的抗菌活性(AMI/PAI;1.01/101 和 1.03/103)。原子力显微镜(AFM)用于确定溶菌酶对细菌细胞的杀菌作用。进一步通过凝胶柱层析处理纯化的蛋白质,并收集洗脱液,其酶活性为 21.93 U/mL,而洗脱液通过天然-PAGE 处理。通过该分析,获得了具有 40.9 U/mL 酶活性的未变性蛋白质。这一步表明该蛋白质(溶菌酶)具有更高的酶潜力。为了确定可能导致杀菌潜力和细胞裂解/酶活性的特定肽(在溶菌酶中),进一步通过 SDS-PAGE 技术处理分离的蛋白质(溶菌酶)。SDS-PAGE 分析显示分别为 34 kDa、24 kDa 和 10 kDa 的不同条带。为了确定肽的化学组成,从 SDS-PAGE 切下条带,进行酶消化、脱盐并通过 LC-MS(液相色谱-质谱)进行分析。LC-MS 分析表明,纯化的溶菌酶具有以下组成:样品中的蛋白质数量为 56,肽数量为 124,肽谱匹配(PSMs)数量为 309。其中,鉴定出两种与溶菌酶和杀菌活性相关的肽为:A0A1Q9G213(N-乙酰基胞壁酰-L-丙氨酸酰胺酶)和 A0A1Q9FRD3(D-丙氨酰-D-丙氨酸羧肽酶)。通过与数据库比较确定了相应的蛋白质序列和核酸序列。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8151/9919333/448ec73d188e/molecules-28-01058-g001.jpg

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