气相单尼古丁的结构:尼古丁在乙胆结合蛋白中的原生结构的影响
Garrett D Santis1, Naoya Takeda2,3, Keisuke Hirata2,4,5
1Department of Chemistry, University of Washington, Seattle, Washington 98195, United States.
研究了单水尼古丁 (NIC) 和诺尼古丁 (NOR) 的结构和红外光谱. 气相研究显示水
科学领域:
- 物理化学
- 光谱学
- 计算化学
背景情况:
- 尼古丁的生物活性受其质子化部位 (罗利丁或里丁) 的影响.
- 之前的研究只能间接推断出质子位点.
- 水在生物系统中调节质子化的作用尚不清楚.
研究的目的:
- 确定气相单尼古丁 (NIC) 和诺尼古丁 (NOR) 的质子位.
- 研究这些复合物的结构和光谱特性.
- 将发现与生物活动和蛋白质环境相关联.
主要方法:
- 使用温度控制的双离子陷进行气相红外光谱.
- 用于离子制备的碰撞剥离方法.
- 用于光谱和结构分析的高级理论计算.
主要成果:
- 在240K时,皮里丁与皮罗利丁的单尼古丁酸盐 (NICH+) 的质子化比为8:2.
- 这种比率与非水合NICH+ (3:2) 和水溶液 (主要是pyrrolidine) 有显著差异.
- 对于诺尼古丁,只观察到皮里丁质子形式 (Pyri-NORH+).
结论:
- 气相中的单个水分子显著改变了尼古丁的质子化偏好.
- 在单化NICH+中观察到的质子化比率模仿了乙胆结合蛋白 (AChBP) 中的环境.
- 尼古丁的纯质子可能与其降低的生物活性有关.
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