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来自香豌豆幼苗的转脒基酶的部分纯化及性质。参与高精氨酸代谢和胺类相互转化。

Partial purification and properties of a transamidinase from Lathyrus sativus seedlings. Involvement in homoarginine metabolism and amine interconversions.

作者信息

Srivenugopal K S, Adiga P R

出版信息

Biochem J. 1980 Sep 1;189(3):553-60. doi: 10.1042/bj1890553.

Abstract

A transamidinase was purified 463-fold from Lathyrus sativus seedlings by affinity chromatography on homoarginine--Sepharose. The enzyme exhibited a wide substrate specificity, and catalysed the reversible transfer of the amidino groups from donors such as arginine, homoarginine and canavanine to acceptors such as lysine, putrescine, agmatine, cadaverine and hydroxylamine. The enzyme could not be detected in the seeds, and attained the highest specific activity in the embryo axis on day 10 after seed germination. Its thiol nature was established by strong inhibition by several thiol blockers and thiol compounds in the presence of ferricyanide. In the absence of an exogenous acceptor, it exhibited weak hydrolytic activity towards arginine. It had apparent mol.wt. 210000, and exhibited Michaelis--Menten kinetics with Km 3.0 mM for arginine. Ornithine competitively inhibited the enzyme, with Ki 1.0 mM in the arginine--hydroxylamine amidino-transfer reaction. Conversion experiments with labelled compounds suggest that the enzyme is involved in homoarginine catabolism during the development of plant embryo to give rise to important amino acids and amine metabolites. Presumptive evidence is also provided for its involvement in the biosynthesis of the guanidino amino acid during seed development. The natural occurrence of arcain in L. sativus and mediation of its synthesis in vitro from agmatine by the transamidinase are demonstrated.

摘要

通过在高精氨酸-琼脂糖上进行亲和层析,从山黧豆幼苗中纯化出一种转脒基酶,纯化倍数为463倍。该酶表现出广泛的底物特异性,催化脒基从精氨酸、高精氨酸和刀豆氨酸等供体向赖氨酸、腐胺、胍丁胺、尸胺和羟胺等受体的可逆转移。在种子中未检测到该酶,在种子萌发后第10天,胚轴中的比活性达到最高。通过在铁氰化物存在下几种巯基阻断剂和巯基化合物的强烈抑制作用,确定了其巯基性质。在没有外源受体的情况下,它对精氨酸表现出微弱的水解活性。其表观分子量为210000,对精氨酸表现出米氏动力学,Km为3.0 mM。鸟氨酸竞争性抑制该酶,在精氨酸-羟胺脒基转移反应中Ki为1.0 mM。用标记化合物进行的转化实验表明,该酶参与植物胚胎发育过程中的高精氨酸分解代谢,产生重要的氨基酸和胺类代谢产物。也提供了其参与种子发育过程中胍基氨基酸生物合成的推测证据。证明了山黧豆中胍丁胺的天然存在以及转脒基酶体外介导从胍丁胺合成胍丁胺的过程。

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