首页> 美国卫生研究院文献>Plant Physiology >l-Arginine and l-Canavanine Metabolism in Jack Bean Canavalia ensiformis (L.) DC. and Soybean Glycine max (L.) Merr.
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l-Arginine and l-Canavanine Metabolism in Jack Bean Canavalia ensiformis (L.) DC. and Soybean Glycine max (L.) Merr.

机译:Canavalia ensiformis(L.)DC的Jack Bean中的l-精氨酸和l-Canavanine代谢。和大豆Glycine max(L.)Merr。

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摘要

Studies have been conducted with the arginase (l-arginine amidinohydrolase, EC 3.5.3.1) of two legumes: jack bean, Canavalia ensiformis (L.) DC., a l-canavanine-containing plant and soybean, Glycine max, a canavanine-free species. Analyses of the arginase obtained from gradient-purified mitochondria of these legumes revealed that the arginine-dependent (ADA) and canavanine-dependent activities (CDA) were localized within this organelle.Kinetic analyses of affinity-purified mitochondrial arginase revealed an apparent Km of 7 to 8 millimolar for arginine with both the jack bean and soybean arginases. Comparable determinations with canavanine revealed an apparent Km of 38 millimolar with the jack bean enzyme; the affinity for this arginine analog with the soybean enzyme is so poor that product formation remained linear even with a canavanine concentration of 890 millimolar.A single macromolecule appears to be responsible for both the ADA and CDA of jack bean arginase. Ion-exchange chromatography of mitochondrial arginase revealed that the ADA and CDA eluted as a single, discrete peak from DEAE-cellulose. Analyses with arginine- and canavanine-linked Sepharose failed to reveal more than one enzyme. Both the ADA and CDA increased by nearly identical amounts following elution from arginine- and canavanine-linked cyanogen bromide-activated sepharose. Neither ADA nor CDA increased preferentially over the other.
机译:已经对以下两种豆科植物的精氨酸酶(1-精氨酸a水解酶,EC 3.5.3.1)进行了研究:波豆,含Canavanlia ensiformis(L.)DC的豆,含L-canavanine的植物和大豆,Glycine max,canavanine-自由物种。从这些豆科植物的梯度纯化线粒体中获得的精氨酸酶分析表明,精氨酸依赖性(ADA)和卡那万碱依赖性活性(CDA)位于该细胞器内。亲和纯化的线粒体精氨酸酶的动力学分析表明其表观Km为7精氨酸和鹰嘴豆和大豆精氨酸酶的精氨酸含量分别为8毫摩尔。与卡纳万碱的可比性测定表明,与波豆酶相比,表观Km为38毫摩尔。该精氨酸类似物与大豆酶的亲和力很差,以至于即使在890毫摩尔的黄花氨酸浓度下,产物的形成仍保持线性。单一的大分子似乎对杰克豆精氨酸酶的ADA和CDA都有影响。线粒体精氨酸酶的离子交换色谱分析显示,ADA和CDA从DEAE纤维素中洗脱为单个离散峰。用精氨酸和黄花氨酸连接的琼脂糖凝胶进行的分析未能揭示一种以上的酶。从精氨酸和鸟氨酸连接的溴化氰活化的琼脂糖洗脱后,ADA和CDA的增加量几乎相同。 ADA和CDA均没有优先增长。

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