Ghosh Manasi, Gayen Shovanlal, Dey Krishna Kishor
Department of Physics, Dr Harisingh Gour Central University Sagar-470003 MP India
Department of Pharmaceutical Sciences, Dr Harisingh Gour Central University Sagar-470003 MP India.
RSC Adv. 2020 Jul 1;10(42):24973-24984. doi: 10.1039/d0ra03772a. eCollection 2020 Jun 29.
The chemical shift anisotropy tensor and site-specific spin-lattice relaxation time of folic acid were determined by a C 2DPASS CP-MAS NMR experiment and Torchia CP experiment respectively. The molecular correlation time at various carbon nuclei sites of folic acid was evaluated by assuming that the C spin-lattice relaxation mechanism is mainly governed by chemical shift anisotropy interaction and hetero-nuclear dipole-dipole coupling. CSA parameters are larger for the carbon nuclei residing at the heteroaromatic ring and aromatic ring, and those attached to double-bonded electronegative oxygen atoms. It is comparatively low for C9, C19, C21, and C22. The molecular correlation time is of the order of 10/10 s for C9, C19, C21 and C22 carbon nuclei, whereas it is of the order of 10 s for the rest of the carbon nuclei sites. Spin lattice relaxation time varies from 416 s to 816 s. For C23 and C14, the value is 816 s, and it is 416 s for C7 nuclei. The correlation between structure and dynamics on an atomic scale of such an important drug as folic acid can be visualized by these types of extensive spectroscopic measurements, which will help to develop an advanced drug for DNA replication.
分别通过C 2DPASS CP-MAS NMR实验和Torchia CP实验测定了叶酸的化学位移各向异性张量和位点特异性自旋晶格弛豫时间。通过假设C自旋晶格弛豫机制主要受化学位移各向异性相互作用和异核偶极-偶极耦合支配,评估了叶酸各个碳核位点的分子相关时间。对于位于杂芳环和芳环上以及与双键电负性氧原子相连的碳核,CSA参数较大。C9、C19、C21和C22的CSA参数相对较低。C9、C19、C21和C22碳核的分子相关时间约为10⁻¹⁰ s,而其余碳核位点的分子相关时间约为10⁻⁹ s。自旋晶格弛豫时间在416 s至816 s之间变化。对于C23和C14,该值为816 s,而C7核的值为416 s。通过这类广泛的光谱测量,可以直观地了解叶酸这种重要药物在原子尺度上结构与动力学之间的关系,这将有助于开发一种用于DNA复制的先进药物。