埃及蜜蜂(Apis Mellifera Lamarckii)毒液中透明质酸酶的生化分离与特性研究

IF 0.7 4区 农林科学 Q4 ENTOMOLOGY Journal of Apicultural Science Pub Date : 2020-06-01 DOI:10.2478/jas-2020-0015
Mohammed M. Abdel-Monsef, Hind A. Zidan, Doaa A. Darwish, H. Masoud, M. Helmy, M. A. Ibrahim
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引用次数: 5

摘要

透明质酸酶被广泛应用于眼科、骨科、内科、妇科、外科、肿瘤学和皮肤科等医学领域。本研究首次利用DEAE-cellulose和Sephacryl S-300色谱柱从埃及蜂毒中纯化和表征了透明质酸酶。蜂毒透明质酸酶比活性为411.7单位/mg蛋白,产率为49.9%,纯化倍数为3.23倍。纯化的蜂毒透明质酸酶天然形态分子量为37 kDa。纯化后的酶在天然PAGE和SDS-PAGE上均相,两个亚基均为18.4 kDa,等电点(pI)为8.6-8.8。结果表明,该酶在较宽的温度(20 ~ 60℃)和pH(4.5 ~ 6.5)范围内稳定,在37℃、pH 5.4和0.15 M NaCl条件下活性最佳。蜂毒透明质酸酶的活性Km为0.029 mg/ml透明质酸,在MgCl2和ZnCl2的作用下其活性升高,在FeCl2的作用下其活性降低。肝素对透明质酸酶具有非竞争性抑制作用,其Ki值为2.9单位,酶分子上有一个结合位点。
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Biochemical Isolation and Characterization of Hyaluronidase Enzyme from Venom of Egyptian Honey Bee Apis Mellifera Lamarckii
Abstract The hyaluronidase enzyme has been used in many such fields of medicine as ophthalmology, orthopaedia, internal medicine, gynecology, surgery, oncology and dermatology. In this study, the hyaluronidase enzyme was purified and characterized for the first time from Egyptian bee venom homogeneously using DEAE-cellulose and Sephacryl S-300 columns. Bee venom hyaluronidase specific activity was 411.7 units/mg protein with 49.9% yield and 3.23-fold purification. The molecular weight of the purified bee venom hyaluronidase native form was 37 kDa. The purified enzyme was found homogeneous on native PAGE and SDS-PAGE, with two congruent subunits of 18.4 kDa and isoelectric point (pI) of 8.6–8.8. The enzyme was found to be stable over a wide range of temperature (20–60°C) and pH (4.5–6.5), and its optimum activity at 37°C, pH 5.4 and 0.15 M NaCl. Km for bee venom hyaluronidase was 0.029 mg/ml hyaluronic acid and its activity was elevated in presence of MgCl2 and ZnCl2 and lowered in presence of FeCl2. Heparin inhibited the hyaluronidase enzyme noncompetitively with a Ki value of 2.9 units heparin and one binding site on the enzyme molecule.
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来源期刊
CiteScore
1.70
自引率
0.00%
发文量
9
审稿时长
>12 weeks
期刊介绍: The Journal of Apicultural Science is a scientific, English-language journal that publishes both original research articles and review papers covering all aspects of the life of bees (superfamily Apoidea) and broadly defined apiculture. The main subject areas include: -bee biology- bee genetics- bee breeding- pathology and toxicology- pollination and bee botany- bee products- management, technologies, and economy- solitary bees and bumblebees
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