5-pregnan-20-one , and epipregnanolone 3␣-hydroxy-5-pregnan-20-one result from w Ž .x the 5-reduction of progesterone 4-pregnene, 3-20-dione P . These P metabolites induce Ž . anesthesia and smooth muscle relaxation nongenomic actions . In the present study, geometries and electronic structure of
The Electronic Structure of Dopamine. An ab initio Electrostatic Potential Study of the Catechol Moiety
✍ Scribed by Han van de Waterbeemd; Pierre-Alain Carrupt; Bernard Testa
- Publisher
- John Wiley and Sons
- Year
- 1985
- Tongue
- German
- Weight
- 518 KB
- Volume
- 68
- Category
- Article
- ISSN
- 0018-019X
No coin nor oath required. For personal study only.
✦ Synopsis
Abstract
Electronic properties of dopamine were studied by the ab initio STO‐3G MO method. The molecular electrostatic potential (MEP) around the aromatic ring and the catechol group remains practically the same in 3,4‐dihydroxytoluene (a model compound) and in neutral dopamine examined in its two extended conformations, namely that found in the crystal (side‐chain and aromatic ring almost perpendicular) and the one corresponding to 2‐amino‐6,7‐dihydroxytetralin (6,7‐ADTN) (side‐chain and aromatic ring almost coplanar). In protonated dopamine and in dopamine hydrochloride, the electrostatic potential of the catechol moiety is overshadowed by the positive charge, but the main features remain discernible. The catechol moiety was examined in its two coplanar conformations containing a ‘flip‐flop H‐bond’. The electrostatic potential around the catechol moiety is quite complex, with alternating positive and negative maxima. At increasing distances above and away from the catechol moiety, only two peripheral maxima, one negative and one positive, remain perceptible. The ‘flip‐flop’ mechanism results in an approximate interchange of these two potential maxima, a fact which tends to level out the structural differences between the α‐ and β‐rotamer of dopamine. Based on these results and on the structure of rigid agonists, some pharmacophoric features of dopamine agonists are proposed.
📜 SIMILAR VOLUMES
We report on an isolated cluster approach to determine local electronic structures of TiO, surfaces before and after formation of intrinsic defects, i.e., oxygen vacancies, at different crystallographic sites. In particular, isolated oxygen vacancies at bridging sites, isolated oxygen vacancies at i
## Abstract The electronic structures of styrene in the Franck‐Condon region have been theoretically examined by means of __ab initio__ complete active space self‐consistent field (CASSCF) and the second order multireference Møller‐Plesset calculations. The optimized structure of styrene in S~0~ is