首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Involvement of cytochrome P450 in oxime production in glucosinolate biosynthesis as demonstrated by an in vitro microsomal enzyme system isolated from jasmonic acid-induced seedlings of Sinapis alba L.
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Involvement of cytochrome P450 in oxime production in glucosinolate biosynthesis as demonstrated by an in vitro microsomal enzyme system isolated from jasmonic acid-induced seedlings of Sinapis alba L.

机译:从芥子酸诱导的白芥子苗中分离的体外微粒体酶系统证明细胞色素P450参与芥子油苷生物合成中的肟生产。

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摘要

An in vitro enzyme system for the conversion of amino acid to oxime in the biosynthesis of glucosinolates has been established by the combined use of an improved isolation medium and jasmonic acid-induced etiolated seedlings of Sinapis alba L. An 8-fold induction of de novo biosynthesis of the L-tyrosine-derived p-hydroxybenzylglucosinolate was obtained in etiolated S. alba seedlings upon treatment with jasmonic acid. Formation of inhibitory glucosinolate degradation products upon tissue homogenization was prevented by inactivation of myrosinase by addition of 100 mM ascorbic acid to the isolation buffer. The biosynthetically active microsomal enzyme system converted L-tyrosine into p-hydroxyphenylacetaldoxime and the production of oxime was strictly dependent on NADPH. The Km and Vmax values of the enzyme system were 346 microM and 538 pmol per mg of protein per h, respectively. The nature of the enzyme catalyzing the conversion of amino acid to oxime in the biosynthesis of glucosinolates has been subject of much speculation. In the present paper, we demonstrate the involvement of cytochrome P450 by photoreversible inhibition by carbon monoxide. The inhibitory effect of numerous cytochrome P450 inhibitors confirms the involvement of cytochrome P450. This provides experimental documentation of similarity between the enzymes converting amino acids into the corresponding oximes in the biosynthesis of glucosinolates and cyanogenic glycosides.
机译:通过结合使用改良的分离培养基和茉莉酸诱导的白芥子苗,建立了在芥子油苷生物合成中将氨基酸转化为肟的体外酶体系。从头开始的8倍诱导经茉莉酸处理后,在黄化的S. alba幼苗中获得了L-酪氨酸衍生的对羟基苄基芥子油苷的生物合成。通过向分离缓冲液中添加100 mM抗坏血酸使黑芥子酶失活,可防止组织均质化时抑制性芥子油苷降解产物的形成。具有生物合成活性的微粒体酶系统将L-酪氨酸转化为对羟基苯乙醛肟,肟的生产严格依赖于NADPH。酶系统的Km和Vmax值分别为346 microM和538 pmol / mg蛋白质/小时。在硫代芥子油苷的生物合成中催化氨基酸转化为肟的酶的性质一直是许多猜测的主题。在本文中,我们证明了一氧化碳对光可逆性抑制作用涉及细胞色素P450。许多细胞色素P450抑制剂的抑制作用证实了细胞色素P450的参与。这提供了在芥子油苷和氰基糖苷的生物合成中将氨基酸转化为相应肟的酶之间相似性的实验证明。

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