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变形链球菌实验室菌株与来自龋损和无龋牙面以及遗传性果糖不耐受受试者的新鲜分离株的比较研究。

Comparative study of Streptococcus mutans laboratory strains and fresh isolates from carious and caries-free tooth surfaces and from subjects with hereditary fructose intolerance.

作者信息

Vadeboncoeur C, Trahan L

出版信息

Infect Immun. 1983 Apr;40(1):81-90. doi: 10.1128/iai.40.1.81-90.1983.

Abstract

This study was undertaken to investigate and compare some biochemical and physiological properties related to sugar metabolism of 4 laboratory strains and 13 freshly isolated strains of Streptococcus mutans from carious and caries-free tooth surfaces and from subjects with hereditary fructose intolerance. Growth in Trypticase (BBL Microbiology Systems)-yeast extract in the presence of various sugars was almost the same for all of the fresh isolates, which grew generally better than the laboratory strains. This was especially noticeable on sucrose where the fresh isolates (including those isolated from hereditary-fructose-intolerant patients) grew two to four times more rapidly than the laboratory strains. The rate of acid production by the fresh isolates, measured with resting cells in the presence of glucose, was quite comparable to the rate of the laboratory strains. The glucose analog, 2-deoxyglucose, inhibited the acid production from glucose by two laboratory strains (6715 and ATCC 27352), but none of the fresh isolates was affected by its presence. The antibiotic, gramicidin D, which allows free diffusion of H(+) across the cell membrane, inhibited the acid production of all of the strains. Phosphoenolpyruvate phosphotransferase activity toward alpha-methylglucoside was found in all of the laboratory and freshly isolated strains. 2-Deoxyglucose phosphotransferase activity was detected in all of the laboratory strains, but many clinical strains, especially those from hereditary-fructose-intolerant patients, contained very low or almost undetectable 2-deoxyglucose phosphotransferase activity. In one strain, the activity was restored after repeated culturing in Trypticase-yeast extract medium supplemented with glucose. Glucokinase and lactate dehydrogenase activities were detected in all of the strains tested. No marked differences were observed for these two enzymes between the fresh isolates and the laboratory strains except for three clinical strains which possessed low levels of glucokinase. The growth of all of the strains in a broth containing 4 mM glucose and 4 mM lactose was studied. Various patterns were observed: diauxie, glucose utilized before lactose but without diauxie, both sugars consumed concurrently, and lactose consumed more rapidly than glucose.

摘要

本研究旨在调查和比较4个实验室菌株以及13个从龋损和无龋牙面、患有遗传性果糖不耐受症的受试者中新鲜分离出的变形链球菌菌株与糖代谢相关的一些生化和生理特性。所有新鲜分离株在含有各种糖类的胰蛋白酶(BBL微生物系统)-酵母提取物中生长情况几乎相同,它们总体上比实验室菌株生长得更好。这在蔗糖上尤为明显,新鲜分离株(包括从遗传性果糖不耐受患者中分离出的菌株)的生长速度比实验室菌株快两到四倍。用静息细胞在葡萄糖存在下测定新鲜分离株的产酸率,与实验室菌株的产酸率相当。葡萄糖类似物2-脱氧葡萄糖抑制了两个实验室菌株(6715和ATCC 27352)由葡萄糖产生的酸,但所有新鲜分离株均不受其存在的影响。抗生素短杆菌肽D可使H(+)自由穿过细胞膜,它抑制了所有菌株的产酸。在所有实验室菌株和新鲜分离株中均发现了磷酸烯醇丙酮酸磷酸转移酶对α-甲基葡萄糖苷的活性。在所有实验室菌株中均检测到了2-脱氧葡萄糖磷酸转移酶活性,但许多临床菌株,尤其是来自遗传性果糖不耐受患者的菌株,其2-脱氧葡萄糖磷酸转移酶活性非常低或几乎检测不到。在一株菌株中,在补充有葡萄糖的胰蛋白酶-酵母提取物培养基中反复培养后,该活性得以恢复。在所有测试菌株中均检测到了葡萄糖激酶和乳酸脱氢酶活性。除了三个葡萄糖激酶水平较低的临床菌株外,新鲜分离株和实验室菌株之间在这两种酶上未观察到明显差异。研究了所有菌株在含有4 mM葡萄糖和4 mM乳糖的肉汤中的生长情况。观察到了各种模式:双相生长,先利用葡萄糖后利用乳糖但无双相生长,两种糖同时消耗,以及乳糖比葡萄糖消耗得更快。

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