Frelek Jadwiga, Kowalska Patrycja, Masnyk Marek, Kazimierski Arkadiusz, Korda Anna, Woźnica Magdalena, Chmielewski Marek, Furche Filipp
Institute of Organic Chemistry of the Polish Academy of Sciences, Kasprzaka 44, 01-224 Warsaw, Poland.
Chemistry. 2007;13(23):6732-44. doi: 10.1002/chem.200700127.
The biological activity of bicyclic beta-lactam antibiotics depends strongly on the absolute configuration of the bridgehead carbon atom. Frelek and co-workers proposed an empirical helicity rule relating the configuration of the bridgehead carbon atom to the sign of the 220 nm band in the electronic circular dichroism (CD) spectrum of beta-lactams. Here we use synthetic organic chemistry, CD spectroscopy, and time-dependent density functional theory (TDDFT) to investigate the validity of this structure-property relationship for eight model compounds. For conformationally flexible beta-lactams, substantial thermal effects are found which must be included in calculations. To this end, we combine TDDFT calculations of CD with full quantum-mechanical Born-Oppenheimer molecular dynamics (MD) simulations for the first time. The CD spectra are sampled with ground-state density functional trajectories of up to 60 ps. The MD simulations show a surprisingly high sensitivity of the CD to the molecular conformation. On the other hand, the relation between CD and thermally averaged structural parameters is much less complex. While the helicity rule does not seem to hold for individual conformers, it is confirmed by the calculations for seven out of eight systems studied if thermally averaged CD spectra and structures are considered. Since thermal effects on CD can be larger than typical inherent inaccuracies of TDDFT, our results emphasize the need for a systematic treatment of conformational dynamics in CD calculations even for moderately flexible systems. Temperature-dependent CD measurements are very useful for this purpose. Our results also suggest that CD spectroscopy may be used as a sensitive probe of conformational dynamics if combined with electronic structure calculations.
双环β-内酰胺抗生素的生物活性在很大程度上取决于桥头碳原子的绝对构型。弗雷莱克及其同事提出了一条经验性的螺旋规则,将桥头碳原子的构型与β-内酰胺电子圆二色性(CD)光谱中220 nm波段的符号联系起来。在此,我们使用合成有机化学、CD光谱学和含时密度泛函理论(TDDFT)来研究这种结构-性质关系对八种模型化合物的有效性。对于构象灵活的β-内酰胺,发现了显著的热效应,在计算中必须予以考虑。为此,我们首次将CD的TDDFT计算与全量子力学的玻恩-奥本海默分子动力学(MD)模拟相结合。CD光谱通过长达60 ps的基态密度泛函轨迹进行采样。MD模拟表明CD对分子构象具有惊人的高灵敏度。另一方面,CD与热平均结构参数之间的关系要简单得多。虽然螺旋规则似乎不适用于单个构象异构体,但如果考虑热平均CD光谱和结构,在所研究的八个系统中的七个系统的计算中得到了证实。由于热对CD的影响可能大于TDDFT典型的固有误差,我们的结果强调即使对于适度灵活的系统,在CD计算中也需要对构象动力学进行系统处理。为此,温度依赖的CD测量非常有用。我们的结果还表明,如果与电子结构计算相结合,CD光谱学可以用作构象动力学的灵敏探针。