Teraguchi S, Ono J, Kiyosawa I, Okonogi S
J Dairy Sci. 1987 Mar;70(3):514-23. doi: 10.3168/jds.S0022-0302(87)80036-X.
Streptococcus thermophilus STH450 had a very high oxygen uptake. This strain was then compared with aerobic metabolism to S. thermophilus ATCC 19258, a reference strain for aerobic metabolism. Molecular oxygen, which was absorbed by S. thermophilus STH450 during aerobic glycolytic metabolism, was involved in the oxidation of NADH by the catalytic activity of NADH oxidase. The portion of pyruvate that corresponded to the oxidized NADH was committed to form alpha-acetolactate, acetoin, and diacetyl. Both strains were deficient in peroxidase and pyruvate oxidase activities; therefore, NADH oxidase was probably the terminal oxidase in aerobic glycolytic metabolism. Oxygen uptake and NADH oxidase activities were significantly higher in S. thermophilus STH450 than in S. thermophilus ATCC 19258. alpha-Acetolactate, acetoin, and diacetyl also accumulated during aerobic glycolytic metabolism of S. thermophilus STH450. However, when both strains were grown in the presence of pyruvate, these metabolites were equivalent. Hence, less oxygen might be needed for pyruvate metabolism.
嗜热链球菌STH450具有非常高的氧气摄取量。然后将该菌株与嗜热链球菌ATCC 19258(一种有氧代谢的参考菌株)的有氧代谢进行比较。在有氧糖酵解代谢过程中被嗜热链球菌STH450吸收的分子氧,通过NADH氧化酶的催化活性参与NADH的氧化。与被氧化的NADH相对应的那部分丙酮酸用于形成α-乙酰乳酸、乙偶姻和双乙酰。两种菌株均缺乏过氧化物酶和丙酮酸氧化酶活性;因此,NADH氧化酶可能是有氧糖酵解代谢中的末端氧化酶。嗜热链球菌STH450的氧气摄取和NADH氧化酶活性显著高于嗜热链球菌ATCC 19258。在嗜热链球菌STH450的有氧糖酵解代谢过程中,α-乙酰乳酸、乙偶姻和双乙酰也会积累。然而,当两种菌株在丙酮酸存在的情况下生长时,这些代谢产物是相当的。因此,丙酮酸代谢可能需要较少的氧气。