Faculty of Chemistry, Jagiellonian University, Gronostajowa 2, 30-387 Krakow, Poland.
Jagiellonian Centre for Experimental Therapeutics (JCET), Jagiellonian University, Bobrzynskiego 14, 30-348 Krakow, Poland.
Molecules. 2020 Sep 24;25(19):4386. doi: 10.3390/molecules25194386.
This work demonstrates resonance Raman optical activity (RROA) spectra of three truncated vitamin B derivatives modified within the nucleotide loop. Since truncated cobalamins possess sufficiently high rotational strength in the range of ROA excitation (532 nm), it was possible to record their spectra in the resonance condition. They showed several distinct spectral features allowing for the distinguishing of studied compounds, in contrast to other methods, i.e., UV-Vis absorption, electronic circular dichroism, and resonance Raman spectroscopy. The improved capacity of the RROA method is based here on the excitation of molecules via more than two electronic states, giving rise to the bisignate RROA spectrum, significantly distinct from a parent Raman spectrum. This observation is an important step in the dissemination of using RROA spectroscopy in studying the complex structure of corrinoids which may prove crucial for a better understanding of their biological role.
这项工作展示了三种在核苷酸环内修饰的截断维生素 B 衍生物的共振拉曼光学活性(RROA)光谱。由于截断钴胺素在 ROA 激发(532nm)范围内具有足够高的旋转强度,因此有可能在共振条件下记录它们的光谱。它们显示了几个明显的光谱特征,允许区分研究的化合物,与其他方法(例如 UV-Vis 吸收、电子圆二色性和共振拉曼光谱)形成对比。该方法的改进能力基于通过两个以上的电子态激发分子,从而产生双符号的 RROA 光谱,与母体拉曼光谱明显不同。这一观察结果是在利用 RROA 光谱研究类咕啉化合物复杂结构的传播中的重要一步,这可能对更好地理解它们的生物学作用至关重要。