Demady Damon R, Lowe Ezra R, Everett Andrew C, Billecke Scott S, Kamada Yasuhiko, Dunbar Anwar Y, Osawa Yoichi
Department of Pharmacology, The University of Michigan Medical School, Ann Arbor, MI 48109-0632, USA.
Drug Metab Dispos. 2003 Jul;31(7):932-7. doi: 10.1124/dmd.31.7.932.
It has been shown that administration of cigarette smoke to rats leads to loss of neuronal nitric-oxide synthase (nNOS) activity and nNOS protein in penile tissue. The exact mechanism for this loss of activity and protein is not known. In the current study, we investigated whether extracts prepared from cigarette smoke or from the cigarette itself could directly inhibit nNOS activity. We discovered that the cigarette smoke extract and the cigarette extract cause a time-, concentration-, and calmodulin-dependent inactivation of nNOS in an in vitro system containing the purified enzyme. L-Arginine, but not D-arginine, protects nNOS from this time-dependent inactivation, suggesting an active site directed event. The kinetics of inactivation are consistent with the metabolism-based or suicide inactivation of nNOS. Based on studies with other metabolism-based inactivators, this cigarette-mediated inactivation may render nNOS more susceptible to proteasomal degradation and thereby may explain the loss of nNOS protein in vivo. The component(s) responsible for nNOS inactivation is not volatile, is not retained by a 3,000 molecular weight cut-off membrane, binds to activated charcoal, and is highly water-soluble under both acidic and basic conditions. The discovery of a direct inactivation of nNOS by an organic, cationic compound(s) present in tobacco and tobacco smoke provides a basis for further study of not only the mechanisms responsible for the biological effects of tobacco but also a search for a potentially novel inactivator of nNOS.
已有研究表明,给大鼠吸入香烟烟雾会导致阴茎组织中神经元型一氧化氮合酶(nNOS)活性及nNOS蛋白丧失。这种活性和蛋白丧失的确切机制尚不清楚。在本研究中,我们调查了香烟烟雾提取物或香烟本身制备的提取物是否能直接抑制nNOS活性。我们发现,在含有纯化酶的体外系统中,香烟烟雾提取物和香烟提取物会导致nNOS发生时间、浓度和钙调蛋白依赖性失活。L-精氨酸而非D-精氨酸可保护nNOS免受这种时间依赖性失活,提示这是一个靶向活性位点的事件。失活动力学与基于代谢的或自杀性nNOS失活一致。基于对其他基于代谢的失活剂的研究,这种香烟介导的失活可能使nNOS更易受到蛋白酶体降解,从而可能解释体内nNOS蛋白的丧失。负责nNOS失活的成分不挥发,不能被截留分子量为3000的膜保留,可与活性炭结合,且在酸性和碱性条件下均高度水溶性。烟草和烟草烟雾中存在的有机阳离子化合物对nNOS的直接失活这一发现,不仅为进一步研究烟草生物学效应的机制提供了基础,也为寻找潜在的新型nNOS失活剂提供了依据。