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产气荚膜梭菌(魏氏梭菌)食物中毒菌株神经氨酸酶的产生

The production of neuraminidase by food poisoning strains of Clostridium welchii (C. perfringens).

作者信息

Fraser A G, Collee J G

出版信息

J Med Microbiol. 1975 May;8(2):251-63. doi: 10.1099/00222615-8-2-251.

Abstract

The production of neuraminidase by a classical strain of Clostridium welchii (C. perfringens) type A was studied. Good yields were produced in 5% Proteose Peptone-water medium (PPW5); the enzyme was essentially extracellular but some further neuraminidase could be released by ultrasonic disintegration of the cells. This also released N-acyl neuraminic acid-aldolase (NAN-aldolase) and the degree to which this interferes with the assay for neuraminidase was evaluated. Forty-one British reference food-poisoning strains of C. welchii type A were examined for extracellular neuraminidase production in PPW5. Twelve of 17 strains that produce so-called heat-sensitive spores were neuraminidase positive whereas 20 of 24 strains that are non-haemolytic and produce very heat-resistant sporeswere neuraminidase negative. Variation was found in the ability to produce neuraminidase among strains of a single Hobbs' serotype; four Hobbs' type-13 strains produced neuraminidase but a fifth did not. Disruption of the cells of a Hobbs' type-2 strain that did not produce any extracellular neuraminidase released NAN-aldolase but there was no evidence of cell-associated neuraminidase. British food-poisoning strains of C. welchii type A thus include some that are clearly neuraminidase positive and some that still cannot be shown to produce neuraminidase. There is no correlation between lack of neuraminidase production and the ability to cause food poisoning, although the majority of non-haemolytic heat-resistant strains do not produce neuraminidase. It remains possible that neuraminidase may play a part in C. welchii gas gangrene; it is suggested that the ability to define neuraminidase-negative strains may now be of value in investigating this possibility.

摘要

对一株典型的A型魏氏梭菌(产气荚膜梭菌)产生神经氨酸酶的情况进行了研究。在5%蛋白胨水培养基(PPW5)中产量良好;该酶基本上存在于细胞外,但通过超声破碎细胞可释放出更多的神经氨酸酶。这也释放出了N-酰基神经氨酸醛缩酶(NAN-醛缩酶),并评估了其对神经氨酸酶测定的干扰程度。检测了41株英国参考A型魏氏梭菌食物中毒菌株在PPW5中产生细胞外神经氨酸酶的情况。17株产生所谓热敏孢子的菌株中有12株神经氨酸酶呈阳性,而24株非溶血性且产生非常耐热孢子 的菌株中有20株神经氨酸酶呈阴性。在单一霍布斯血清型的菌株中发现了产生神经氨酸酶能力的差异;4株霍布斯13型菌株产生神经氨酸酶,但第5株不产生。对一株不产生任何细胞外神经氨酸酶的霍布斯2型菌株的细胞进行破碎后释放出了NAN-醛缩酶,但没有细胞相关神经氨酸酶的证据。因此,英国A型魏氏梭菌食物中毒菌株包括一些明显神经氨酸酶呈阳性的菌株和一些仍无法证明能产生神经氨酸酶的菌株。虽然大多数非溶血性耐热菌株不产生神经氨酸酶,但神经氨酸酶产生的缺乏与引起食物中毒的能力之间没有相关性。神经氨酸酶仍有可能在A型魏氏梭菌气性坏疽中起作用;有人认为,现在能够界定神经氨酸酶阴性菌株可能对研究这种可能性有价值。

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