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无乳链球菌营养特性对化学限定培养基中乳过氧化物酶-硫氰酸盐-过氧化氢抑制其生长的影响。

Effects of nutritional characteristics of Streptococcus agalactiae on inhibition of growth by lactoperoxidase-thiocyanate-hydrogen peroxide in chemically defined culture medium.

作者信息

Mickelson M N

出版信息

Appl Environ Microbiol. 1976 Aug;32(2):238-44. doi: 10.1128/aem.32.2.238-244.1976.

Abstract

Five cultures of Streptococcus agalactiae have an absolute requirement for L-cystine to grow in a chemically defined medium. The L-cystine could be replaced with cysteine, glutathione, or the disulfide form of glutathione. Dithiothreitol could not substitute for the sulfur-containing amino acids of glutathione; hence, the growth requirement appears to be truly nutritional. Growth was maximum with 4 to 5 mug of L-cystine per ml. If the concentration of L-cystine was no greater than 4 to 5 mug/ml, complete growth inhibition could be obtained by the addition of lactoperoxidase, thiocyanate, and H2O2. The growth inhibition, however, was nullified by additions of L-cystine 10-fold or more in excess of the concentration needed for maximum growth. During the aerobic degradation of glucose by cell suspensions, H2O2 accumulation could be shown with cultures 317 and 11-13, the only cultures the growth of which was inhibited without addition of exogenous H2O2. All of the cultures had varying degrees of peroxidase activity. The balance between H2O2 generation and peroxidase activity of the culture evidently determined whether growth could be inhibited with lactoperoxidase and thiocyanate without H2O2 addition. The growth yeilds per 0.5 mol of the disulfide forms (cystine and oxidized glutathione) were 1.5 and 1.9 times greater than that per 1 mol of the sulfhydryl forms (cysteine and glutathione).

摘要

五株无乳链球菌在化学成分确定的培养基中生长时对L-胱氨酸有绝对需求。L-胱氨酸可用半胱氨酸、谷胱甘肽或谷胱甘肽的二硫形式替代。二硫苏糖醇不能替代谷胱甘肽中含硫氨基酸;因此,这种生长需求似乎是真正的营养需求。每毫升培养基中含4至5微克L-胱氨酸时生长最佳。如果L-胱氨酸浓度不高于4至5微克/毫升,添加乳过氧化物酶、硫氰酸盐和H2O2可完全抑制生长。然而,添加超过最大生长所需浓度10倍或更多的L-胱氨酸可消除生长抑制。在细胞悬液对葡萄糖的需氧降解过程中,317和11 - 13菌株可检测到H2O2积累,这是仅有的两株不添加外源H2O2生长就受抑制的菌株。所有菌株都有不同程度的过氧化物酶活性。培养物中H2O2生成与过氧化物酶活性之间的平衡显然决定了不添加H2O2时乳过氧化物酶和硫氰酸盐能否抑制生长。每0.5摩尔二硫形式(胱氨酸和氧化型谷胱甘肽)的生长产量比每1摩尔巯基形式(半胱氨酸和谷胱甘肽)的生长产量分别高1.5倍和1.9倍。

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Compounds affecting Streptococcus agalactiae growth in milk.
J Dairy Sci. 1974 Jul;57(7):797-802. doi: 10.3168/jds.S0022-0302(74)84967-2.

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