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苍耳种子中归因于半胱氨酸合酶的胞质β-氰基丙氨酸合酶活性。胞质半胱氨酸合酶的纯化与特性分析。

Cytosolic beta-cyanoalanine synthase activity attributed to cysteine synthases in cocklebur seeds. Purification and characterization of cytosolic cysteine synthases.

作者信息

Maruyama A, Ishizawa K, Takagi T, Esashi Y

机构信息

Biological Institute, Graduate School of Science, Tohoku University, Senda, Japan.

出版信息

Plant Cell Physiol. 1998 Jul;39(7):671-80. doi: 10.1093/oxfordjournals.pcp.a029421.

Abstract

The activity of beta-cyanoalanine synthase (CAS, EC 4.4.1.9) in cotyledons of cocklebur seeds (Xanthium pennsylvanicum Wallr.) was detected both in the soluble and particulate fractions. The CAS activity of the soluble fraction (cytosolic CAS activity) was 10 times higher than that of the particulate fraction. The CAS activity of the particulate fraction was confirmed to be localized in the mitochondria. Both enzymatic activities were clearly separated by non-denaturing PAGE. The enzyme with cytosolic CAS activity has been extensively purified and separated into three different forms designated as cyt-1, cyt-2, and cyt-3. According to the SDS-PAGE analysis, the three enzymes are estimated to be a homodimer composed of 35-kDa subunits. The purified enzymes showed CS activity. Partial amino acid sequences of cyt-1 were determined and had a high homology with cysteine synthases (CS, EC 4.2.99.8) from other plant sources. The catalytic action of the purified CSs in converting cyanide and cysteine into H2S and beta-cyanoalanine was confirmed by the detection of significant 14CN incorporation into beta-cyanoalanine. These results indicated that cytosolic CAS activity is due to cytosolic CS and suggested that the CAS activity of CS is likely to be involved in cyanide metabolism in plant tissues.

摘要

在苍耳种子(苍耳)子叶的可溶性部分和颗粒部分均检测到了β-氰基丙氨酸合酶(CAS,EC 4.4.1.9)的活性。可溶性部分的CAS活性(胞质CAS活性)比颗粒部分高10倍。颗粒部分的CAS活性被证实定位于线粒体中。通过非变性聚丙烯酰胺凝胶电泳可清晰分离这两种酶活性。具有胞质CAS活性的酶已被广泛纯化,并分离为三种不同形式,分别命名为cyt-1、cyt-2和cyt-3。根据十二烷基硫酸钠-聚丙烯酰胺凝胶电泳分析,这三种酶估计为由35 kDa亚基组成的同型二聚体。纯化后的酶表现出CS活性。测定了cyt-1的部分氨基酸序列,其与其他植物来源的半胱氨酸合酶(CS,EC 4.2.99.8)具有高度同源性。通过检测到显著的14C掺入β-氰基丙氨酸,证实了纯化后的CSs在将氰化物和半胱氨酸转化为H2S和β-氰基丙氨酸中的催化作用。这些结果表明,胞质CAS活性归因于胞质CS,并提示CS的CAS活性可能参与植物组织中的氰化物代谢。

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