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使用基因失活形式的伪结核棒状杆菌磷脂酶D制备的绵羊干酪性淋巴结炎疫苗的效力

Efficacy of an ovine caseous lymphadenitis vaccine formulated using a genetically inactive form of the Corynebacterium pseudotuberculosis phospholipase D.

作者信息

Hodgson A L, Carter K, Tachedjian M, Krywult J, Corner L A, McColl M, Cameron A

机构信息

CSIRO Division of Animal Health, Parkville, Vic., Australia.

出版信息

Vaccine. 1999 Feb 26;17(7-8):802-8. doi: 10.1016/s0264-410x(98)00264-3.

Abstract

Caseous lymphadenitis (CLA) is an economically significant disease of sheep caused by the gram-positive bacterium Corynebacterium pseudotuberculosis. CLA vaccines are currently formulated using formalin inactivated culture supernatants that are rich in the C. pseudotuberculosis phospholipase D (PLD) exotoxin. One alternative to chemical detoxification is to inactivate the PLD genetically. This procedure not only provides a means to remove an onerous chemical treatment step but also the opportunity to increase gene expression, therefore improve protein yields. Using site-specific mutagenesis the C. pseudotuberculosis PLD was inactivated by substituting a serine residue at histidine 20 within the enzyme active site. CLA vaccine formulated using genetically inactivated PLD protected 44% of sheep against C. pseudotuberculosis challenge compared with 95% protection offered by the formalin inactivated preparation. Since there was no apparent difference in immune response mounted by vaccinated sheep the reason for this variation in vaccine efficacy remains unclear. Although genetic inactivation can be a convenient means to produce toxoid vaccines its use to develop a new CLA vaccine provided no net benefit over the conventional formulation.

摘要

干酪性淋巴结炎(CLA)是一种由革兰氏阳性细菌伪结核棒状杆菌引起的对绵羊具有重要经济影响的疾病。目前,CLA疫苗是用富含伪结核棒状杆菌磷脂酶D(PLD)外毒素的福尔马林灭活培养上清液配制而成。化学解毒的一种替代方法是对PLD进行基因灭活。这一过程不仅提供了一种去除繁琐化学处理步骤的方法,还提供了增加基因表达从而提高蛋白质产量的机会。通过定点诱变,在酶活性位点的组氨酸20处替换一个丝氨酸残基,使伪结核棒状杆菌PLD失活。与福尔马林灭活制剂提供的95%的保护率相比,使用基因灭活PLD配制的CLA疫苗保护了44%的绵羊免受伪结核棒状杆菌的攻击。由于接种疫苗的绵羊产生的免疫反应没有明显差异,这种疫苗效力差异的原因尚不清楚。虽然基因灭活可能是生产类毒素疫苗的一种便捷方法,但用其开发新型CLA疫苗与传统配方相比并没有带来净效益。

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