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Fructoselysine 3-epimerase, an enzyme involved in the metabolism of the unusual Amadori compound psicoselysine in Escherichia coli.

机译:果糖赖氨酸3-表异构酶,一种参与大肠杆菌中不寻常的Amadori化合物psicoselysine代谢的酶。

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摘要

The frl (fructoselysine) operon encodes fructoselysine 6-kinase and fructoselysine 6-phosphate deglycase, allowing the conversion of fructoselysine into glucose 6-phosphate and lysine. We now show that a third enzyme encoded by this operon catalyses the metal-dependent reversible interconversion of fructoselysine with its C-3 epimer, psicoselysine. The enzyme can be easily assayed through the formation of tritiated water from [3-3H]fructoselysine. Psicoselysine supports the growth of Escherichia coli, causing the induction of the three enzymes of the frl operon. No growth on fructoselysine or psicoselysine was observed with Tn5 mutants in which the putative transporter (FrlA) or fructoselysine 6-phosphate deglycase (FrlB) had been inactivated, indicating the importance of the frl operon for the metabolism of both substrates. The ability of E. coli to grow on psicoselysine suggests the occurrence of this unusual Amadori compound in Nature.
机译:frl(果糖赖氨酸)操纵子编码果糖赖氨酸6激酶和果糖赖氨酸6磷酸脱糖酶,可将果糖赖氨酸转化为6磷酸葡萄糖和赖氨酸。现在,我们显示由该操纵子编码的第三种酶催化果糖赖氨酸与其C-3差向异构体,psyoselysine的金属依赖性可逆相互转化。通过从[3-3H]果糖赖氨酸形成of化水,可以轻松地测定该酶。酪氨酸赖氨酸支持大肠杆菌的生长,从而导致frl操纵子的三种酶的诱导。在其中推定的转运蛋白(FrlA)或果糖赖氨酸6-磷酸脱糖酶(FrlB)已被灭活的Tn5突变体中,未观察到果糖赖氨酸或psyoselysine的生长,表明frl操纵子对于两种底物代谢的重要性。大肠杆菌在psyoselysine上生长的能力表明这种不寻常的Amadori化合物在自然界中的发生。

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