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在烟草(茄科)和其他植物中发现的天然存在的神经元型一氧化氮合酶抑制剂。

Naturally occurring neuronal NO-synthase inactivators found in Nicotiana tabacum (Solanaceae) and other plants.

作者信息

Lowe Ezra R, Everett Andrew C, Lau Miranda, Dunbar Anwar Y, Michener David, Osawa Yoichi

机构信息

Department of Pharmacology, The University of Michigan Medical School, 1301 Medical Science Research Building III, Ann Arbor, MI 48109-0632, USA.

出版信息

Phytomedicine. 2007 May;14(5):344-52. doi: 10.1016/j.phymed.2006.09.004. Epub 2006 Nov 3.

Abstract

NO-synthase (NOS) is a heme-containing enzyme that catalyzes the oxidation of L-arginine to nitric oxide, an important cellular signaling molecule. Recently, it was found that aqueous extracts of tobacco cigarettes cause the inactivation of the neuronal isoform of NOS (nNOS) and that this may explain some of the toxicological effects of smoking. Although the exact identity of the chemical inactivator(s) is not known, we wondered if extracts prepared from other plants, including those closely related to tobacco, Nicotiana tabacum (Solanaceae), would similarly inactivate nNOS. We examined 33 plants, representing diverse members of the plant kingdom ranging from whisk fern, Psilotum nudum (Psilotaceae) to tobacco and discovered 18 plants that contain a chemical inactivator(s) of nNOS. Of these plants, 16 are members of the core asterids flowering plant group. Of these asterids, 6 are members of the Solanaceae family, of which tobacco is a member. Based on the phylogenetic relationship of the plants, it is possible that the same chemical or related chemical inactivator(s) exist. This, in turn, may help elucidate the structure of the chemical(s), as well as provide a source of a potentially novel inactivator of nNOS. The alkaloid nicotine can be excluded as putative nNOS inhibitor.

摘要

一氧化氮合酶(NOS)是一种含血红素的酶,可催化L-精氨酸氧化为一氧化氮,后者是一种重要的细胞信号分子。最近发现,香烟的水提取物会导致神经元型NOS(nNOS)失活,这可能解释了吸烟的一些毒理学效应。尽管化学灭活剂的确切成分尚不清楚,但我们想知道从其他植物(包括与烟草密切相关的烟草属植物烟草(茄科))中制备的提取物是否也会使nNOS失活。我们检测了33种植物,它们代表了植物界的不同成员,从松叶蕨(松叶蕨科)到烟草,并发现有18种植物含有nNOS的化学灭活剂。在这些植物中,16种是核心菊类开花植物组的成员。在这些菊类植物中,6种是茄科植物,烟草是其中之一。根据这些植物的系统发育关系,有可能存在相同的化学物质或相关的化学灭活剂。这反过来可能有助于阐明该化学物质的结构,并提供一种潜在的新型nNOS灭活剂来源。生物碱尼古丁可以排除作为假定的nNOS抑制剂。

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