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Hydrolytic enzymes and lectin-binding activity of black-pigmented anaerobic rods

机译:黑色着色厌氧棒的水解酶和凝集素结合活性

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Recent taxonomic studies on black-pigmented anaerobic rods, a group of bacteria found on mucosal surfaces of humans and animals, led to the subdivision of existing species and to the creation of new species. The aim of this study was to characterize all 11 currently recognized species of black-pigmented bacteria (55 strains) for their ability to hydrolyse a variety of natural and synthetic substrates and for their lectin reactivity. Although most of the strains demonstrated some activity against proteinaceous substrates, Porphyromonas gingivalis was the only species able to hydrolyse type I collagen. Most strains possessed glycylprolyl protease activity, elastase-like activity and phospholipase C activity, whereas trypsin-like activity was restricted to P. gingivalis, Porphyromonas salivosa and Bacteroides macacae. β-Lactamase activity was demonstrated in five strains belonging to the saccharolytic group. The lectin reactivity of the bacteria was determined by a dot-blot procedure using horseradish-peroxidase-conjugated lectins. Three lectins, LOTUS A, RCA-1 and ConA, failed to react with any of the bacteria tested. WGA reacted strongly with the cell surface of human biotypes of asaccharolytic black-pigmented bacteria (P. gingivalis, Porphyromonas asaccharolytica and Porphyromonas endodontalis) and Prevotella intermedia. The animal biotype strains of P. gingivalis showed a higher affinity for SBA and PNA than for WGA.
机译:最近关于黑色着色的厌氧棒的分类学研究,一组在人类和动物的粘膜表面上发现的细菌,导致现有物种的细分和创造新物种。本研究的目的是表征所有11种印知识的黑色色素细菌(55株),以便它们能够水解各种天然和合成基材和凝集反应性。虽然大多数菌株都表现出对蛋白质底物的一些活性,但Porphyromonas Gingivalis是能够水解I胶原蛋白的唯一物种。大多数菌株具有甘氨酸脯氨酰蛋白酶活性,弹性蛋白酶样活性和磷脂酶C活性,而胰蛋白酶样活性仅限于P. Gingivalis,Porphyromonas唾液和Bactoides Macacae。在五种属于糖溶解基团的五种菌株中证明了β-内酰胺酶活性。通过使用辣根过氧化物酶 - 缀合的凝集素的点污染方法测定细菌的凝集素反应性。三章,莲花A,RCA-1和Cona未能与任何测试的任何细菌反应。 WGA与白糖溶解黑色色素细菌的人体生物型细胞表面强烈反应(P.Gingivalis,Porphyromonas Asaccarolytica和Porphyromonas endodontalis)和Phivotella介质。 P.Gingivalis的动物生物型菌株对SBA和PNA具有比WGA更高的亲和力。

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