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口腔与非口腔密螺旋体物种的肽酶、糖苷酶和酯酶活性比较。

Comparison of peptidase, glycosidase and esterase activities of oral and non-oral Treponema species.

作者信息

Mikx F H

机构信息

Department of Periodontology and Preventive Dentistry, University of Nijmegen, The Netherlands.

出版信息

J Gen Microbiol. 1991 Jan;137(1):63-8. doi: 10.1099/00221287-137-1-63.

Abstract

The enzyme profiles of 20 oral and non-oral Treponema strains were investigated using an API ZYM Complete Research kit. The test included 10 2-naphthyl derivatives of fatty acids, 20 p-nitrophenol derivatives of carbohydrates and 60 2-naphthylamide derivatives of amino acids and peptides. The oral Treponema species investigated were T. denticola, T. vincentii and T. Pectinovorum. The non-oral species examined were T. phagedenis, T. hyodysenteriae and intestinal spirochaetes of human and chicken origin. Esterase activities on C5 to C10 fatty acids were common among different Treponema species. Glycosidase activities were infrequently observed in T. vincentii, T. pectinovorum and T. phagedenis Reiter strain. Arabinosidase, lactosidase and xylosidase activity was observed in the T. hyodysenteriae strains but alpha-L-fucosidase activity was found only in T. denticola and T. phagedenis. More exo- and endo-peptidase activities were found in T. denticola than in other species. The enteropathogenic T. hyodysenteriae isolates had a very low proteolytic profile. Dipeptidyl prolyl amidase activity was observed in all species except in the T. phagedenis Reiter strain and the avian intestinal spirochaetes. The enzyme profiles did not discriminate between oral and non-oral Treponema species.

摘要

使用API ZYM Complete Research试剂盒研究了20株口腔和非口腔密螺旋体菌株的酶谱。该测试包括10种脂肪酸的2-萘基衍生物、20种碳水化合物的对硝基苯酚衍生物以及60种氨基酸和肽的2-萘酰胺衍生物。所研究的口腔密螺旋体物种有齿垢密螺旋体、文森特密螺旋体和果胶密螺旋体。所检测的非口腔物种有溃蚀性密螺旋体、猪痢疾密螺旋体以及人和鸡源的肠道螺旋体。不同密螺旋体物种中常见对C5至C10脂肪酸的酯酶活性。在文森特密螺旋体、果胶密螺旋体和溃蚀性密螺旋体赖特菌株中很少观察到糖苷酶活性。在猪痢疾密螺旋体菌株中观察到阿拉伯糖苷酶、乳糖苷酶和木糖苷酶活性,但仅在齿垢密螺旋体和溃蚀性密螺旋体中发现α-L-岩藻糖苷酶活性。齿垢密螺旋体中的外肽酶和内肽酶活性比其他物种更多。肠道致病性猪痢疾密螺旋体分离株的蛋白水解谱非常低。除溃蚀性密螺旋体赖特菌株和禽类肠道螺旋体外,在所有物种中均观察到二肽基脯氨酰胺酶活性。酶谱无法区分口腔和非口腔密螺旋体物种。

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