Fluorescence-Polarization-Based Assaying of Lysozyme with Chitooligosaccharide Tracers

溶菌酶 化学 色谱法 肽聚糖 荧光 胞壁酶 生物化学 量子力学 物理
作者
Л.И. Мухаметова,Dmitry O. Zherdev,Anton N. Kuznetsov,O. N. Yudina,Yury E. Tsvetkov,Sergei A. Eremin,Vadim B. Krylov,Nikolay E. Nifantiev
出处
期刊:Biomolecules [MDPI AG]
卷期号:14 (2): 170-170 被引量:2
标识
DOI:10.3390/biom14020170
摘要

Lysozyme is a well-known enzyme found in many biological fluids which plays an important role in the antibacterial protection of humans and animals. Lysozyme assays are used for the diagnosis of a number of diseases and utilized in immunohistochemistry, genetic and cellular engineering studies. The assaying methods are divided into two categories measuring either the concentration of lysozyme as a protein or its activity as an enzyme. While the first category of methods traditionally uses an enzyme-linked immunosorbent assay (ELISA), the methods for the determination of the enzymatic activity of lysozyme use either live bacteria, which is rather inconvenient, or natural peptidoglycans of high heterogeneity and variability, which leads to the low reproducibility of the assay results. In this work, we propose the use of a chemically synthesized substrate of a strictly defined structure to measure in a single experiment both the concentration of lysozyme as a protein and its enzymatic activity by means of the fluorescence polarization (FP) method. Chito-oligosaccharides of different chain lengths were fluorescently labeled and tested leading to the selection of the pentasaccharide as the optimal size tracer and the further optimization of the assay conditions for the accurate (detection limit 0.3 μM) and rapid (<30 min) determination of human lysozyme. The proposed protocol was applied to assay human lysozyme in tear samples and resulted in good correlation with the reference assay. The use of synthetic fluorescently labeled tracer, in contrast to natural peptidoglycan, in FP analysis allows for the development of a reproducible method for the determination of lysozyme activity.
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