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乳酸链球菌的分解代谢物抑制作用及糖类的顺序代谢

Catabolite inhibition and sequential metabolism of sugars by Streptococcus lactis.

作者信息

Thompson J, Turner K W, Thomas T D

出版信息

J Bacteriol. 1978 Mar;133(3):1163-74. doi: 10.1128/jb.133.3.1163-1174.1978.

Abstract

Growth of galactose-adapted cells of Streptococcus lactis ML(3) in a medium containing a mixture of glucose, galactose, and lactose was characterized initially by the simultaneous metabolism of glucose and lactose. Galactose was not significantly utilized until the latter sugars had been exhausted from the medium. The addition of glucose or lactose to a culture of S. lactis ML(3) growing exponentially on galactose caused immediate inhibition of galactose utilization and an increase in growth rate, concomitant with the preferential metabolism of the added sugar. Under nongrowing conditions, cells of S. lactis ML(3) grown previously on galactose metabolized the three separate sugars equally rapidly. However, cells suspended in buffer containing a mixture of glucose plus galactose or lactose plus galactose again consumed glucose or lactose preferentially. The rate of galactose metabolism was reduced by approximately 95% in the presence of the inhibitory sugar, but the maximum rate of metabolism was resumed upon exhaustion of glucose or lactose from the system. When presented with a mixture of glucose and lactose, the resting cells metabolized both sugars simultaneously. Lactose, glucose, and a non-metabolizable glucose analog (2-deoxy-d-glucose) prevented the phosphoenolpyruvate-dependent uptake of thiomethyl-beta-d-galactopyranoside (TMG), but the accumulation of TMG, like galactose metabolism, commenced immediately upon exhaustion of the metabolizable sugars from the medium. Growth of galactose-adapted cells of the lactose-defective variant S. lactis 7962 in the triple-sugar medium was characterized by the sequential metabolism of glucose, galactose, and lactose. Growth of S. lactis ML(3) and 7962 in the triple-sugar medium occurred without apparent diauxie, and for each strain the patterns of sequential sugar metabolism under growing and nongrowing conditions were identical. Fine control of the activities of preexisting enzyme systems by catabolite inhibition may afford a satisfactory explanation for the observed sequential utilization of sugars by these two organisms.

摘要

乳酸乳球菌ML(3)的半乳糖适应细胞在含有葡萄糖、半乳糖和乳糖混合物的培养基中生长,最初的特征是葡萄糖和乳糖同时代谢。直到培养基中的后两种糖耗尽,半乳糖才被大量利用。向在半乳糖上指数生长的乳酸乳球菌ML(3)培养物中添加葡萄糖或乳糖,会立即抑制半乳糖的利用,并提高生长速率,同时伴随着添加糖的优先代谢。在非生长条件下,先前在半乳糖上生长的乳酸乳球菌ML(3)细胞以相同的速度代谢三种单独的糖。然而,悬浮在含有葡萄糖加半乳糖或乳糖加半乳糖混合物的缓冲液中的细胞再次优先消耗葡萄糖或乳糖。在存在抑制性糖的情况下,半乳糖代谢速率降低了约95%,但当系统中的葡萄糖或乳糖耗尽时,代谢的最大速率又恢复了。当面对葡萄糖和乳糖的混合物时,静息细胞同时代谢这两种糖。乳糖、葡萄糖和一种不可代谢的葡萄糖类似物(2-脱氧-D-葡萄糖)阻止了磷酸烯醇丙酮酸依赖性的硫代甲基-β-D-吡喃半乳糖苷(TMG)的摄取,但TMG的积累与半乳糖代谢一样,在培养基中可代谢糖耗尽后立即开始。乳糖缺陷变体乳酸乳球菌7962的半乳糖适应细胞在三糖培养基中的生长特征是葡萄糖、半乳糖和乳糖的顺序代谢。乳酸乳球菌ML(3)和7962在三糖培养基中的生长没有明显的二次生长现象,并且对于每个菌株,在生长和非生长条件下顺序糖代谢的模式是相同的。通过分解代谢物抑制对预先存在的酶系统活性进行精细控制,可能为观察到的这两种生物体对糖的顺序利用提供了一个令人满意的解释。

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