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A Simple Protocol for the Determination of Lysostaphin Enzymatic Activity

机译:一种简单的测定溶酶后酶活性的方案

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摘要

Antibacterial lysins are enzymes that hydrolyze bacterial peptidoglycan, which results in the rapid death of bacterial cells due to osmotic lysis. Lysostaphin is one of the most potent and well-studied lysins active against important nosocomial pathogen Staphylococcus aureus. Similarly to most other lysins, lysostaphin is composed of enzymatic and peptidoglycan-binding domains, and both domains influence its antibacterial activity. It is thus desirable to be able to study the activity of both domains independently. Lysostaphin cleaves pentaglycine cross-bridges within the staphylococcal peptidoglycan. Here, we report the protocol to study the catalytic activity of lysostaphin on the isolated pentaglycine peptide that is based on the chromogenic reaction of peptide amino groups with ninhydrin. Unlike previously reported assays, this protocol does not require in-house chemical synthesis or specialized equipment and can be readily performed in most laboratories. We demonstrate the use of this protocol to study the effect of EDTA treatment on the lysostaphin enzymatic activity. We further used this protocol to determine the catalytic efficiency of lysostaphin on the isolated pentaglycine and compared it to the apparent catalytic efficiency on the whole staphylococcal cells. These results highlight the relative impact of enzymatic and peptidoglycan-binding domains of lysostaphin on its bacteriolytic activity.
机译:抗菌裂解丝素是水解细菌肽聚糖的酶,这导致由于渗透裂解而导致细菌细胞的快速死亡。 Lysostaphin是最有效且学习良好的赖辛,其对重要的医院病原体金黄色葡萄球菌。与大多数其他裂解丝类似,裂变后素由酶和肽聚糖结合结构域组成,并且两个结构域都会影响其抗菌活性。因此,希望能够独立地研究两个结构域的活性。 Lysostaphin在葡萄球菌肽聚糖中切割戊甘油的交叉桥。在这里,我们报告了基于含茚三酮的肽氨基的发色反应的分离的戊甘氨酸肽上的裂变桥苷催化活性的方案。与先前报道的分析不同,该方案不需要内部化学合成或专业设备,并且可以在大多数实验室中容易地进行。我们证明了本协议的使用来研究EDTA治疗对裂变酶活性的影响。我们进一步使用该方案来确定溶粒桥蛋白在分离的戊甘油上的催化效率,并将其与整个葡萄球菌细胞上表观催化效率进行比较。这些结果突出了裂变桥酶酶和肽聚糖结合结构域对其溶硅基活性的相对影响。

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