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大蒜(葱属植物)中的蒜氨酸裂解酶(蒜氨酸酶)。生化特性及cDNA克隆。

Alliin lyase (Alliinase) from garlic (Allium sativum). Biochemical characterization and cDNA cloning.

作者信息

Rabinkov A, Zhu X Z, Grafi G, Galili G, Mirelman D

机构信息

Department of Membrane Research and Biophysics, Weizmann Institute of Science, Rehovot, Israel.

出版信息

Appl Biochem Biotechnol. 1994 Sep;48(3):149-71. doi: 10.1007/BF02788739.

Abstract

The garlic plant (Allium sativum) alliinase (EC 4.4.1.4), which catalyzes the synthesis of allicin, was purified to homogeneity from bulbs using various steps, including hydrophobic chromatography. Molecular and biochemical studies showed that the enzyme is a dimer of two subunits of MW 51.5 kDa each. Its Km using synthetic S-allylcysteine sulfoxide (+ isomer) as substrate was 1.1 mM, its pH optimum 6.5, and its isoelectric point 6.35. The enzyme is a glycoprotein containing 6% carbohydrate. N-terminal sequences of the intact polypeptide chain as well as of a number of peptides obtained after cyanogen bromide cleavage were obtained. Cloning of the cDNAs encoding alliinase was performed by a two-step strategy. In the first, a cDNA fragment (pAli-1-450 bp) was obtained by PCR using a mixed oligonucleotide primer synthesized according to a 6-amino acid segment near the N-terminal of the intact polypeptide. The second step involved screening of garlic lambda gt11 and lambda ZAPII cDNA libraries with pAli-1, which yielded two clones; one was nearly full length and the second was full length. These clones exhibited some degree of DNA sequence divergence, especially in their 3' noncoding regions, suggesting that they were encoded by separate genes. The nearly full length cDNA was fused in frame to a DNA encoding a signal peptide from alpha wheat gliadin, and expressed in Xenopus oocytes. This yielded a 50 kDa protein that interacted with the antibodies against natural bulb alliinase. Northern and Western blot analyses showed that the bulb alliinase was highly expressed in bulbs, whereas a lower expression level was found in leaves, and no expression was detected in roots. Strikingly, the roots exhibited an abundant alliinase activity, suggesting that this tissue expressed a distinct alliinase isozyme with very low homology to the bulb enzyme.

摘要

大蒜植株(葱属植物大蒜)中的蒜氨酸酶(EC 4.4.1.4)可催化大蒜素的合成,通过包括疏水色谱在内的多个步骤从鳞茎中纯化至同质。分子和生化研究表明,该酶是由两个分子量均为51.5 kDa的亚基组成的二聚体。以合成的S - 烯丙基半胱氨酸亚砜(+异构体)为底物时,其米氏常数为1.1 mM,最适pH为6.5,等电点为6.35。该酶是一种含糖量为6%的糖蛋白。获得了完整多肽链以及溴化氰裂解后得到的多个肽段的N端序列。通过两步策略进行了编码蒜氨酸酶的cDNA克隆。第一步,使用根据完整多肽N端附近的一个6氨基酸片段合成的混合寡核苷酸引物,通过PCR获得一个cDNA片段(pAli - 1 - 450 bp)。第二步是用pAli - 1筛选大蒜λgt11和λZAPII cDNA文库,得到两个克隆;一个几乎是全长,另一个是全长。这些克隆表现出一定程度的DNA序列差异,尤其是在它们的3'非编码区,表明它们由不同的基因编码。将近全长的cDNA与编码α - 小麦醇溶蛋白信号肽的DNA框内融合,并在非洲爪蟾卵母细胞中表达。这产生了一种50 kDa的蛋白质,它与抗天然鳞茎蒜氨酸酶的抗体相互作用。Northern和Western印迹分析表明,鳞茎蒜氨酸酶在鳞茎中高度表达,而在叶片中表达水平较低,在根中未检测到表达。令人惊讶的是,根表现出丰富的蒜氨酸酶活性,表明该组织表达了一种与鳞茎酶同源性非常低的独特蒜氨酸酶同工酶。

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