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烟草中的叶绿素降解:关于两种非荧光叶绿素分解代谢物的结构

Chlorophyll breakdown in tobacco: on the structure of two nonfluorescent chlorophyll catabolites.

作者信息

Berghold Joachim, Eichmüller Christian, Hörtensteiner Stefan, Kräutler Bernhard

机构信息

Institute of Organic Chemistry, Leopold-Franzens-Universität Innsbruck, Innrain 52a, A-6020 Innsbruck.

出版信息

Chem Biodivers. 2004 Apr;1(4):657-68. doi: 10.1002/cbdv.200490057.

Abstract

In extracts of senescent leaves of the tobacco plant Nicotiana rustica, two colorless compounds with UV/VIS characteristics of nonfluorescent chlorophyll catabolites (NCCs) were detected and tentatively identified as Nr-NCCs. These two polar NCCs were found in similar amounts in the fresh extracts, and their constitutions could be determined by spectroscopic analysis. The data showed both of the two Nr-NCCs to have the same tetrapyrrolic core structure, as reported previously for all other NCCs from senescent higher plants. In the less polar catabolite, named Nr-NCC-2, this core structure was conjugated with a glucopyranose unit, as similarly discovered earlier in Bn-NCC-2, an NCC from oilseed rape (Brassica napus). The more polar NCC from tobacco leaves, Nr-NCC-1, carried an additional malonyl substituent at the 6'-OH group of the glucopyranosyl moiety. Partial (enzyme-catalyzed) hydrolysis of Nr-NCC-1 gave Nr-NCC-2, while enzyme-catalyzed malonylation of Nr-NCC-2 gave Nr-NCC-1, establishing the identity of their basic tetrapyrrole structure. In earlier work (on the polar NCCs from oilseed rape), only separate glucopyranosyl and malonyl functionalities were detected. Nr-NCC-1, thus, represents a further variant of the structures of NCCs from senescent higher plants and exhibits an unprecedented peripheral refunctionalization in chlorophyll catabolites.

摘要

在黄花烟草衰老叶片的提取物中,检测到两种无色化合物,它们具有非荧光叶绿素分解产物(NCCs)的紫外/可见特征,并初步鉴定为Nr-NCCs。这两种极性NCCs在新鲜提取物中的含量相似,其结构可通过光谱分析确定。数据表明,这两种Nr-NCCs都具有相同的四吡咯核心结构,但在衰老高等植物的所有其他NCCs中也有相同的报道。在极性较小的分解产物中,名为Nr-NCC-2,这种核心结构与一个吡喃葡萄糖单元共轭,这与之前在油菜(Brassica napus)的NCC Bn-NCC-2中发现的情况类似。烟草叶片中极性较大的NCC,Nr-NCC-1在吡喃葡萄糖基部分的6'-OH基团上带有一个额外的丙二酰取代基。Nr-NCC-1的部分(酶催化)水解产生Nr-NCC-2,而Nr-NCC-2的酶催化丙二酰化产生Nr-NCC-1,从而确定了它们基本四吡咯结构的一致性。在早期的研究(关于油菜的极性NCCs)中,只检测到了单独的吡喃葡萄糖基和丙二酰官能团。因此,Nr-NCC-1代表了衰老高等植物NCCs结构的另一种变体,并且在叶绿素分解产物中表现出前所未有的外围再功能化。

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