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逃避素的化学性质:对加利福尼亚海兔防御性分泌物中由L-氨基酸氧化酶产生的复杂混合物中的成分进行鉴定和定量分析。

The chemistry of escapin: identification and quantification of the components in the complex mixture generated by an L-amino acid oxidase in the defensive secretion of the sea snail Aplysia californica.

作者信息

Kamio Michiya, Ko Ko-Chun, Zheng Shilong, Wang Binghe, Collins Stacy L, Gadda Giovanni, Tai Phang C, Derby Charles D

机构信息

Department of Biology, Georgia State University, P.O. Box 4010, Atlanta, GA 30302-4010, USA.

出版信息

Chemistry. 2009;15(7):1597-603. doi: 10.1002/chem.200801696.

Abstract

Escapin is an L-amino acid oxidase in the ink of a marine snail, the sea hare Aplysia californica, which oxidizes L-lysine (1) to produce a mixture of chemicals which is antipredatory and antimicrobial. The goal of our study was to determine the identity and relative abundance of the constituents of this mixture, using molecules generated enzymatically with escapin and also using products of organic syntheses. We examined this mixture under the natural range of pH values for ink-from approximately 5 at full strength to approximately 8 when fully diluted in sea water. The enzymatic reaction likely forms an equilibrium mixture containing the linear form alpha-keto-epsilon-aminocaproic acid (2), the cyclic imine Delta(1)-piperidine-2-carboxylic acid (3), the cyclic enamine Delta(2)-piperidine-2-carboxylic acid (4), possibly the linear enol 6-amino-2-hydroxy-hex-2-enoic acid (7), the alpha-dihydroxy acid 6-amino-2,2-dihydroxy-hexanoic acid (8), and the cyclic aminol 2-hydroxy-piperidine-2-carboxylic acid (9). Using NMR and mass spectroscopy, we show that 3 is the major component of this enzymatic product at any pH, but at more basic conditions, the equilibrium shifts to produce relatively more 4, and at acidic conditions, the equilibrium shifts to produce relatively more 2, 7, and/or 9. Studies of escapin's enzyme kinetics demonstrate that because of the high concentrations of escapin and L-lysine in the ink secretion, millimolar concentrations of 3, H(2)O(2), and ammonia are produced, and also lower concentrations of 2, 4, 7, and 9 as a result. We also show that reactions of this mixture with H(2)O(2) produce delta-aminovaleric acid (5) and delta-valerolactam (6), with 6 being the dominant component under the naturally acidic conditions of ink. Thus, the product of escapin's action on L-lysine contains an equilibrium mixture that is more complex than previously known for any L-amino acid oxidase.

摘要

逃逸素是一种存在于海兔(加州海兔)墨汁中的L-氨基酸氧化酶,它能将L-赖氨酸(1)氧化,生成具有抗捕食和抗菌作用的多种化学物质的混合物。我们研究的目的是确定该混合物成分的种类和相对丰度,研究方法包括使用逃逸素酶促生成的分子以及有机合成产物。我们在墨汁自然的pH值范围内对该混合物进行了研究,墨汁原液的pH值约为5,在海水中完全稀释后pH值约为8。酶促反应可能形成一种平衡混合物,其中包含线性形式的α-酮基-ε-氨基己酸(2)、环状亚胺Δ¹-哌啶-2-羧酸(3)、环状烯胺Δ²-哌啶-2-羧酸(4),可能还有线性烯醇6-氨基-2-羟基-己-2-烯酸(7)、α-二羟基酸6-氨基-2,2-二羟基-己酸(8)以及环状氨基醇2-羟基-哌啶-2-羧酸(9)。通过核磁共振和质谱分析,我们发现3在任何pH值下都是该酶促产物的主要成分,但在碱性更强的条件下,平衡会向生成相对更多4的方向移动,而在酸性条件下,平衡会向生成相对更多2、7和/或9的方向移动。对逃逸素酶动力学的研究表明,由于墨汁分泌物中逃逸素和L-赖氨酸的浓度很高,会生成毫摩尔浓度的3、H₂O₂和氨,同时也会生成较低浓度的2、4、7和9。我们还发现,该混合物与H₂O₂反应会生成δ-氨基戊酸(5)和δ-戊内酰胺(6),在墨汁自然的酸性条件下,6是主要成分。因此,逃逸素作用于L-赖氨酸的产物包含一种比此前已知的任何L-氨基酸氧化酶的产物都更复杂的平衡混合物。

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