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在柠檬突变家蚕中,由6-丙酮酰四氢蝶呤合成四氢生物蝶呤的酶由两种羰基还原酶组成。

The enzyme that synthesizes tetrahydrobiopterin from 6-pyruvoyl-tetrahydropterin in the lemon mutant silkworm consists of two carbonyl reductases.

作者信息

Iino T, Takikawa S I, Yamamoto T, Sawada H

机构信息

Department of General Studies, Nihon University, Sakurajosui 3-25-40, Setagayaku, Tokyo, 156, Japan.

出版信息

Arch Biochem Biophys. 2000 Jan 15;373(2):442-6. doi: 10.1006/abbi.1999.1561.

Abstract

Tetrahydrobiopterin plays an important role in the biosynthesis of certain neurotransmitters. Using DEAE-Sepharose FF column chromatography, we separated the enzyme that synthesizes tetrahydrobiopterin from 6-pyruvoyl-tetrahydropterin [which is different from sepiapterin reductase (EC 1.1.1.153)] in the lemon mutant of the silkworm Bombyx mori into two fractions, which were named carbonyl reductase I (CR I) and carbonyl reductase II (CR II). The CR I enzyme converted 6-pyruvoyl-tetrahydropterin to 6-lactoyl-tetrahydropterin, while CR II converted 6-pyruvoyl-tetrahydropterin to 1'-hydroxy-2'-oxopropyl-tetrahydropterin, both reactions occurring only in the presence of NADPH. Neither of the two carbonyl reductases alone was able to catalyze the conversion of 6-pyruvoyl-tetrahydropterin to tetrahydrobiopterin in the presence of NADPH. However, when CR I was mixed with CR II in the reaction mixture, 6-pyruvoyl-tetrahydropterin was reduced to tetrahydrobiopterin in the presence of NADPH. Moreover, CR I catalyzed the formation of tetrahydrobiopterin from 1'-hydroxy-2'-oxopropyl-tetrahydropterin, while CR II converted 6-lactoyl-tetrahydropterin to tetrahydrobiopterin, both reactions occurring only in the presence of NADPH. Our results suggest that there are two potential routes for formation of tetrahydrobiopterin from 6-pyruvoyl-tetrahydropterin in the lemon mutant silkworm. In the first route, 1'-hydroxy-2'-oxopropyl-tetrahydropterin is formed from 6-pyruvoyl-tetrahydropterin by CR II and then reduced to tetrahydrobiopterin by CR I, both reactions occurring only in the presence of NADPH. In the other route, 6-pyruvoyl-tetrahydropterin is reduced to 6-lactoyl-tetrahydropterin by CR I and then converted to tetrahydrobiopterin by CR II, both reactions occurring only in the presence of NADPH.

摘要

四氢生物蝶呤在某些神经递质的生物合成中起重要作用。我们使用二乙氨基乙基-琼脂糖凝胶FF柱色谱法,从家蚕柠檬突变体中分离出了合成四氢生物蝶呤的酶(该酶不同于蝶啶还原酶(EC 1.1.1.153)),该酶可将6-丙酮酸四氢蝶呤转化为四氢生物蝶呤,分离得到的酶被分为两个组分,分别命名为羰基还原酶I(CR I)和羰基还原酶II(CR II)。CR I酶将6-丙酮酸四氢蝶呤转化为6-乳酰四氢蝶呤,而CR II将6-丙酮酸四氢蝶呤转化为1'-羟基-2'-氧代丙基四氢蝶呤,这两个反应均仅在存在NADPH的情况下发生。单独的两种羰基还原酶均无法在存在NADPH的情况下催化6-丙酮酸四氢蝶呤转化为四氢生物蝶呤。然而,当在反应混合物中将CR I与CR II混合时,在存在NADPH的情况下,6-丙酮酸四氢蝶呤被还原为四氢生物蝶呤。此外,CR I催化从1'-羟基-2'-氧代丙基四氢蝶呤形成四氢生物蝶呤,而CR II将6-乳酰四氢蝶呤转化为四氢生物蝶呤,这两个反应均仅在存在NADPH的情况下发生。我们的结果表明,在柠檬突变体家蚕中,从6-丙酮酸四氢蝶呤形成四氢生物蝶呤有两条潜在途径。在第一条途径中,CR II将6-丙酮酸四氢蝶呤转化为1'-羟基-2'-氧代丙基四氢蝶呤,然后CR I将其还原为四氢生物蝶呤,这两个反应均仅在存在NADPH的情况下发生。在另一条途径中,CR I将6-丙酮酸四氢蝶呤还原为6-乳酰四氢蝶呤,然后CR II将其转化为四氢生物蝶呤,这两个反应均仅在存在NADPH的情况下发生。

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