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Glycerol kinase as a substitute for dihydroxyacetone kinase in a mutant of Klebsiella pneumoniae.

机译:甘油激酶可替代肺炎克雷伯菌的一种二羟基丙酮激酶。

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摘要

With dihydroxyacetone as the sole source of carbon and energy, constitutively synthesized glycerol kinase of the glp system supported aerobic growth of Klebsiella pneumoniae mutants lacking the inducible dihydroxyacetone kinase of the dha system. Glycerol kinase had an apparent Km of 0.01 mM for its physiological substrate and 1 mM for its surrogate substrate. However, the growth rate on dihydroxyacetone of cells relying on glycerol kinase increased with the concentration of the carbon and energy source up to 50 mM, suggesting that permeation is rate limiting.
机译:用二羟基丙酮作为碳和能量的唯一来源,glp系统组成性合成的甘油激酶支持缺乏dha系统的可诱导二羟基丙酮激酶的肺炎克雷伯菌突变体的有氧生长。甘油激酶的生理底物的表观Km为0.01 mM,替代底物的表观Km为1 mM。然而,依赖于甘油激酶的细胞在二羟基丙酮上的生长速率随碳和能量源的浓度增加至50 mM而增加,这表明渗透是限速的。

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