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Insights into the structural requirements of farnesyltransferase inhibitors as potential anti-tumor agents based on 3D-QSAR CoMFA and CoMSIA models.
Eur J Med Chem. 2008 Jan; 43(1):142-54.EJ

Abstract

A three-dimensional quantitative structure-activity relationship (3D-QSAR) study was performed on three different chemical series reported as selective farnesyltransferase (FTase) inhibitors employing comparative molecular field analysis (CoMFA) and comparative molecular similarity indices (CoMSIA) techniques to investigate the structural requirements for substrates and derive a predictive model that may be used for the design of novel FTase inhibitors. Removal of outliers improved the predictive power of models developed for all three structurally diverse classes of compounds. 3D-QSAR models were derived for 3-aminopyrrolidinone derivatives (training set N=38, test set N=7), 2-amino-nicotinonitriles (training set N=46, test set N=13) and 1-aryl-1'-imidazolyl methyl ethers (training set N=35, test set N=5). The CoMFA models with steric and electrostatic fields exhibited r(2)(cv) 0.479-0.803, r(2)(ncv) 0.945-0.993, r(2)(pred) 0.686-0.811. The CoMSIA models displayed r(2)(cv) 0.411-0.814, r(2)(ncv) 0.923-0.984, r(2)(pred) 0.399-0.787. 3D contour maps generated from these models were analyzed individually, which provide the regions in space where interactive fields may influence the activity. The superimposition of contour maps on the active site of farnesyltransferase additionally helps in understanding the structural requirements of these inhibitors. 3D-QSAR models developed may guide our efforts in designing and predicting the FTase inhibitory activity of novel molecules.

Authors+Show Affiliations

Pharmacy Department, Faculty of Technology and Engineering, The M.S. University of Baroda, Kalabhavan, PO Box 51, Baroda 390 001, Gujarat, India.No affiliation info availableNo affiliation info available

Pub Type(s)

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

Language

eng

PubMed ID

17448576

Citation

Puntambekar, Devendra S., et al. "Insights Into the Structural Requirements of Farnesyltransferase Inhibitors as Potential Anti-tumor Agents Based On 3D-QSAR CoMFA and CoMSIA Models." European Journal of Medicinal Chemistry, vol. 43, no. 1, 2008, pp. 142-54.
Puntambekar DS, Giridhar R, Yadav MR. Insights into the structural requirements of farnesyltransferase inhibitors as potential anti-tumor agents based on 3D-QSAR CoMFA and CoMSIA models. Eur J Med Chem. 2008;43(1):142-54.
Puntambekar, D. S., Giridhar, R., & Yadav, M. R. (2008). Insights into the structural requirements of farnesyltransferase inhibitors as potential anti-tumor agents based on 3D-QSAR CoMFA and CoMSIA models. European Journal of Medicinal Chemistry, 43(1), 142-54.
Puntambekar DS, Giridhar R, Yadav MR. Insights Into the Structural Requirements of Farnesyltransferase Inhibitors as Potential Anti-tumor Agents Based On 3D-QSAR CoMFA and CoMSIA Models. Eur J Med Chem. 2008;43(1):142-54. PubMed PMID: 17448576.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - Insights into the structural requirements of farnesyltransferase inhibitors as potential anti-tumor agents based on 3D-QSAR CoMFA and CoMSIA models. AU - Puntambekar,Devendra S, AU - Giridhar,Rajani, AU - Yadav,Mange Ram, Y1 - 2007/02/25/ PY - 2006/12/01/received PY - 2007/01/05/revised PY - 2007/02/01/accepted PY - 2007/4/24/pubmed PY - 2008/4/10/medline PY - 2007/4/24/entrez SP - 142 EP - 54 JF - European journal of medicinal chemistry JO - Eur J Med Chem VL - 43 IS - 1 N2 - A three-dimensional quantitative structure-activity relationship (3D-QSAR) study was performed on three different chemical series reported as selective farnesyltransferase (FTase) inhibitors employing comparative molecular field analysis (CoMFA) and comparative molecular similarity indices (CoMSIA) techniques to investigate the structural requirements for substrates and derive a predictive model that may be used for the design of novel FTase inhibitors. Removal of outliers improved the predictive power of models developed for all three structurally diverse classes of compounds. 3D-QSAR models were derived for 3-aminopyrrolidinone derivatives (training set N=38, test set N=7), 2-amino-nicotinonitriles (training set N=46, test set N=13) and 1-aryl-1'-imidazolyl methyl ethers (training set N=35, test set N=5). The CoMFA models with steric and electrostatic fields exhibited r(2)(cv) 0.479-0.803, r(2)(ncv) 0.945-0.993, r(2)(pred) 0.686-0.811. The CoMSIA models displayed r(2)(cv) 0.411-0.814, r(2)(ncv) 0.923-0.984, r(2)(pred) 0.399-0.787. 3D contour maps generated from these models were analyzed individually, which provide the regions in space where interactive fields may influence the activity. The superimposition of contour maps on the active site of farnesyltransferase additionally helps in understanding the structural requirements of these inhibitors. 3D-QSAR models developed may guide our efforts in designing and predicting the FTase inhibitory activity of novel molecules. SN - 0223-5234 UR - https://www.unboundmedicine.com/medline/citation/17448576/Insights_into_the_structural_requirements_of_farnesyltransferase_inhibitors_as_potential_anti_tumor_agents_based_on_3D_QSAR_CoMFA_and_CoMSIA_models_ L2 - https://linkinghub.elsevier.com/retrieve/pii/S0223-5234(07)00096-7 DB - PRIME DP - Unbound Medicine ER -