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无细胞乙烯形成系统缺乏立体化学保真度。

Cell-free ethylene-forming systems lack stereochemical fidelity.

机构信息

Sittingbourne Research Centre, Shell Research Limited, ME9 8AG, Sittingbourne, Kent, UK.

出版信息

Planta. 1984 Sep;162(1):85-8. doi: 10.1007/BF00397425.

Abstract

In-vitro systems for the conversion of 1-aminocyclopropane-1-carboxylic acid (ACC) to ethylene have been reported using pea supernatants, carnation petal microsomes, olive leaf protein and, most recently, pea mitochondria. It has also been shown, in intact tissues of apple, mung bean and pea, that the system responsible for conversion of ACC to ethylene can produce 1-butene from isomers of 1-amino-2-ethylcyclopropane-1-carboxylic acid (AEC). This conversion shows a high degree of steroselectivity, and isomer discrimination is therefore a valuable criterion by which to judge the validity of subcellular systems. It is shown here that all in-vitro ethylene-forming systems so far described fail by a wide margin to match the AEC-isomer preference of the corresponding intact tissues with respect to 1-butene generation. This work supports and extends recent reports by McKeon and Yang (1984, Planta 160, 84-87) and by Guy and Kende (1984, Planta 160, 281-287) on the characteristics of ethylene formation by pea homogenates. The vacuolar conversion described by the latter authors is the simplest system yet described that retains appropriate sterochemical fidelity.

摘要

已有研究报告表明,豌豆上清液、康乃馨花瓣微粒体、橄榄油叶蛋白,以及最近的豌豆线粒体等体外系统可将 1-氨基环丙烷-1-羧酸(ACC)转化为乙烯。在苹果、绿豆和豌豆的完整组织中也表明,负责将 ACC 转化为乙烯的系统可以将 1-氨基-2-乙基环丙烷-1-羧酸(AEC)的异构体转化为 1-丁烯。这种转化表现出高度的立体选择性,因此,异构体的区分是判断亚细胞系统有效性的一个有价值的标准。本文表明,迄今为止所描述的所有体外乙烯形成系统在生成 1-丁烯方面,与相应完整组织中 AEC 异构体的偏好相差甚远。这项工作支持并扩展了 McKeon 和 Yang(1984,Planta 160,84-87)以及 Guy 和 Kende(1984,Planta 160,281-287)最近关于豌豆匀浆中乙烯形成特征的报告。后者作者描述的液泡转化是迄今为止描述的最简单的系统,它保留了适当的立体化学保真度。

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