首页> 美国卫生研究院文献>Viruses >A Thermophilic Phage Endolysin Fusion to a Clostridium perfringens-Specific Cell Wall Binding Domain Creates an Anti-Clostridium Antimicrobial with Improved Thermostability
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A Thermophilic Phage Endolysin Fusion to a Clostridium perfringens-Specific Cell Wall Binding Domain Creates an Anti-Clostridium Antimicrobial with Improved Thermostability

机译:嗜热菌噬菌体溶血素融合到产气荚膜梭菌的特定细胞壁结合域创建具有改进的热稳定性的抗梭菌抗菌剂。

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摘要

Clostridium perfringens is the third leading cause of human foodborne bacterial disease and is the presumptive etiologic agent of necrotic enteritis among chickens. Treatment of poultry with antibiotics is becoming less acceptable. Endolysin enzymes are potential replacements for antibiotics. Many enzymes are added to animal feed during production and are subjected to high-heat stress during feed processing. To produce a thermostabile endolysin for treating poultry, an E. coli codon-optimized gene was synthesized that fused the N-acetylmuramoyl-l-alanine amidase domain from the endolysin of the thermophilic bacteriophage ΦGVE2 to the cell-wall binding domain (CWB) from the endolysin of the C. perfringens-specific bacteriophage ΦCP26F. The resulting protein, PlyGVE2CpCWB, lysed C. perfringens in liquid and solid cultures. PlyGVE2CpCWB was most active at pH 8, had peak activity at 10 mM NaCl, 40% activity at 150 mM NaCl and was still 16% active at 600 mM NaCl. The protein was able to withstand temperatures up to 50 °C and still lyse C. perfringens. Herein, we report the construction and characterization of a thermostable chimeric endolysin that could potentially be utilized as a feed additive to control the bacterium during poultry production.
机译:产气荚膜梭状芽胞杆菌是人类食源性细菌性疾病的第三个主要原因,并且是鸡中坏死性肠炎的推测病因。用抗生素治疗家禽变得越来越不被接受。内溶素酶是抗生素的潜在替代品。在生产过程中,许多酶被添加到动物饲料中,并在饲料加工过程中经受高热应激。为了生产用于治疗家禽的热稳定内溶素,合成了一个大肠杆菌密码子优化的基因,该基因将嗜热噬菌体ΦGVE2的内溶素中的N-乙酰基muramoyl-1-丙氨酸酰胺酶结构域与细胞壁结合结构域(CWB)融合在一起。产气荚膜梭菌特异性噬菌体ΦCP26F的内溶素。所得蛋白质PlyGVE2CpCWB在液体和固体培养物中裂解了产气荚膜梭菌。 PlyGVE2CpCWB在pH 8时活性最高,在10 mM NaCl时具有峰值活性,在150 mM NaCl时具有40%的活性,而在600 mM NaCl时仍具有16%的活性。该蛋白质能够承受高达50°C的温度,并且仍能溶解产气荚膜梭菌。本文中,我们报道了热稳定的嵌合内溶素的构建和表征,其可能被用作饲料添加剂以控制家禽生产过程中的细菌。

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