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CoMFA, CoMSIA, and molecular hologram QSAR studies of novel neuronal nAChRs ligands-open ring analogues of 3-pyridyl ether.
J Chem Inf Model. 2005 Mar-Apr; 45(2):440-8.JC

Abstract

3-Pyridyl ethers are excellent nAChRs ligands, which show high subtype selectivity and binding affinity to alpha4beta2 nAChR. Although the quantitative structure-activity relationship (QSAR) of nAChRs ligands has been widely investigated using various classes of compounds, the open ring analogues of 3-pyridyl ethers have been less involved in these studies due to the greater flexibility of this kind of molecule. In this study, two three-dimensional QSAR techniques and one two-dimensional QSAR technique were used to correlate the molecular structure with the biological activity of 64 analogues of 3-pyridyl ethers. Three different QSAR models were established. Their performances in the QSAR studies of open ring analogues of 3-pyridyl ethers were evaluated by the statistical values in the corresponding models. All models exhibited satisfactory predictive power. Of these models, the HQSAR behaved optimally in terms of the statistical values with q2=0.845, r2=0.897. Finally, graphic interpretation of three different models provided coincident information about the interaction of the ligand-receptor complex and supplied useful guidelines for the synthesis of novel, potent ligands.

Authors+Show Affiliations

Department of Chemistry, Beijing Normal University, 19# Street Xinjiekou, Beijing, China, 100875. hbzhang@bnu.edu.cnNo affiliation info availableNo affiliation info available

Pub Type(s)

Journal Article
Research Support, Non-U.S. Gov't

Language

eng

PubMed ID

15807510

Citation

Zhang, Huabei, et al. "CoMFA, CoMSIA, and Molecular Hologram QSAR Studies of Novel Neuronal nAChRs Ligands-open Ring Analogues of 3-pyridyl Ether." Journal of Chemical Information and Modeling, vol. 45, no. 2, 2005, pp. 440-8.
Zhang H, Li H, Liu C. CoMFA, CoMSIA, and molecular hologram QSAR studies of novel neuronal nAChRs ligands-open ring analogues of 3-pyridyl ether. J Chem Inf Model. 2005;45(2):440-8.
Zhang, H., Li, H., & Liu, C. (2005). CoMFA, CoMSIA, and molecular hologram QSAR studies of novel neuronal nAChRs ligands-open ring analogues of 3-pyridyl ether. Journal of Chemical Information and Modeling, 45(2), 440-8.
Zhang H, Li H, Liu C. CoMFA, CoMSIA, and Molecular Hologram QSAR Studies of Novel Neuronal nAChRs Ligands-open Ring Analogues of 3-pyridyl Ether. J Chem Inf Model. 2005 Mar-Apr;45(2):440-8. PubMed PMID: 15807510.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - CoMFA, CoMSIA, and molecular hologram QSAR studies of novel neuronal nAChRs ligands-open ring analogues of 3-pyridyl ether. AU - Zhang,Huabei, AU - Li,Hua, AU - Liu,Chunping, PY - 2005/4/6/pubmed PY - 2006/6/13/medline PY - 2005/4/6/entrez SP - 440 EP - 8 JF - Journal of chemical information and modeling JO - J Chem Inf Model VL - 45 IS - 2 N2 - 3-Pyridyl ethers are excellent nAChRs ligands, which show high subtype selectivity and binding affinity to alpha4beta2 nAChR. Although the quantitative structure-activity relationship (QSAR) of nAChRs ligands has been widely investigated using various classes of compounds, the open ring analogues of 3-pyridyl ethers have been less involved in these studies due to the greater flexibility of this kind of molecule. In this study, two three-dimensional QSAR techniques and one two-dimensional QSAR technique were used to correlate the molecular structure with the biological activity of 64 analogues of 3-pyridyl ethers. Three different QSAR models were established. Their performances in the QSAR studies of open ring analogues of 3-pyridyl ethers were evaluated by the statistical values in the corresponding models. All models exhibited satisfactory predictive power. Of these models, the HQSAR behaved optimally in terms of the statistical values with q2=0.845, r2=0.897. Finally, graphic interpretation of three different models provided coincident information about the interaction of the ligand-receptor complex and supplied useful guidelines for the synthesis of novel, potent ligands. SN - 1549-9596 UR - https://www.unboundmedicine.com/medline/citation/15807510/CoMFA_CoMSIA_and_molecular_hologram_QSAR_studies_of_novel_neuronal_nAChRs_ligands_open_ring_analogues_of_3_pyridyl_ether_ DB - PRIME DP - Unbound Medicine ER -