Lüderitz T, Grisebach H
Eur J Biochem. 1981 Sep;119(1):115-24. doi: 10.1111/j.1432-1033.1981.tb05584.x.
Cambial sap of spruce (Picea abies) proved to be a good source for isolation of cinnamoyl-CoA reductase and cinnamyl alcohol:NADP+ dehydrogenase. Apparently homogeneous enzymes were obtained by a multistep procedure including dye-ligand chromatography and for the reductase also affinity chromatography on (coenzyme A)-agarose. An improved purification procedure for the reductase from soybean cell cultures is also reported. Molecular weights and subunit composition of reductase and dehydrogenase from spruce are very similar to those of the corresponding enzymes from soybean. Reduction of feruloyl-CoA to coniferaldehyde catalysed by the reductase is a freely reversible reaction with an equilibrium constant of 5.6 x 10(-4) M at pH 6.25. A strong dependence of the Michaelis constants on the type of buffer was found. For reductase the Km-value of feruloyl-CoA in phosphate buffer (5.2 microM) is about 14-times similar than in citrate buffer (73 microM). Pronounced differences in substrate specificities between the enzymes from spruce and soybean were found, which reflect the different lignin composition of gymnosperms and dicotyledenous angiosperms. From the kinetic constants of the enzymes it can be concluded that under physiological conditions feruloyl-CoA is the preferred substrate for the reductase from both sources whereas sinapoyl-CoA is a substrate only for the soybean reductase and sinapyldehyde a substrate only for the soybean dehydrogenase. 4-Coumaroyl-CoA is a poor substrate for the reductase from both spruce and soybean. This result is consistent with the low content of 4-coumaryl alcohol units in gymnosperm and angiosperm lignin.
云杉(欧洲云杉)形成层汁液被证明是分离肉桂酰辅酶A还原酶和肉桂醇:NADP +脱氢酶的良好来源。通过包括染料配体色谱法的多步程序获得了明显均一的酶,对于还原酶还通过在(辅酶A)-琼脂糖上的亲和色谱法获得。还报道了一种改进的从大豆细胞培养物中纯化还原酶的方法。云杉还原酶和脱氢酶的分子量和亚基组成与大豆中相应酶的分子量和亚基组成非常相似。还原酶催化阿魏酰辅酶A还原为松柏醛是一个自由可逆反应,在pH 6.25时平衡常数为5.6×10(-4)M。发现米氏常数对缓冲液类型有很强的依赖性。对于还原酶,阿魏酰辅酶A在磷酸盐缓冲液中的Km值(5.2 microM)约为柠檬酸盐缓冲液(73 microM)中的14倍。发现云杉和大豆的酶在底物特异性上有明显差异,这反映了裸子植物和双子叶被子植物木质素组成的不同。从酶的动力学常数可以得出结论,在生理条件下,阿魏酰辅酶A是两种来源还原酶的首选底物,而芥子酰辅酶A仅是大豆还原酶的底物,芥子醛仅是大豆脱氢酶的底物。4-香豆酰辅酶A是云杉和大豆还原酶的不良底物。这一结果与裸子植物和被子植物木质素中4-香豆醇单元含量低一致。