Rosenthal G A
T.H. Morgan School of Biological Sciences, University of Kentucky, Lexington 40506.
Proc Natl Acad Sci U S A. 1992 Mar 1;89(5):1780-4. doi: 10.1073/pnas.89.5.1780.
A newly discovered enzyme, L-canaline reductase (NADPH:L-canaline oxidoreductase, EC 1.6.6-), has been isolated and purified from 10-day-old leaves of the jack bean Canavalia ensiformis (Leguminosae). This higher plant is representative of a large number of legumes that synthesize L-canavanine, an important nitrogen-storing nonprotein amino acid. Canavanine-storing legumes contain arginase, which hydrolyzes L-canavanine to form the toxic metabolite L-canaline. Canaline reductase, having a mass of approximately 167 kDa and composed of 82-kDa dimers, catalyzes a NADPH-dependent reductive cleavage of L-canaline to L-homoserine and ammonia. This is the only enzyme known to use reduced NADP to cleave an O-N bond. Canaline reductase performs at least three important functions for canavanine-synthesizing legumes. First, it detoxifies canaline. Second, it increases by one-half the overall yield of ammoniacal nitrogen released from canavanine. Third, it permits the carbon skeleton of canavanine, a secondary plant metabolite, to support vital primary metabolic reactions.
一种新发现的酶,L-刀豆氨酸还原酶(NADPH:L-刀豆氨酸氧化还原酶,EC 1.6.6-),已从菜豆(豆科)10日龄的叶片中分离并纯化出来。这种高等植物是大量合成L-刀豆氨酸(一种重要的储存氮的非蛋白质氨基酸)的豆类的代表。储存刀豆氨酸的豆类含有精氨酸酶,该酶可将L-刀豆氨酸水解形成有毒代谢产物L-刀豆碱。刀豆碱还原酶的质量约为167 kDa,由82 kDa的二聚体组成,催化NADPH依赖的L-刀豆碱还原裂解为L-高丝氨酸和氨。这是已知的唯一一种利用还原型NADP裂解O-N键的酶。刀豆碱还原酶对合成刀豆氨酸的豆类至少具有三个重要功能。首先,它使刀豆碱解毒。其次,它使从刀豆氨酸释放的氨态氮的总产量增加了一半。第三,它使刀豆氨酸(一种次生植物代谢产物)的碳骨架能够支持重要的初级代谢反应。