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3D QSAR STUDIES ON A SERIES OF QUINAZOLINE DERRIVATIVES AS TYROSINE
KINASE (EGFR) INHIBITOR: THE k-NEAREST NEIGHBOR MOLECULAR FIELD ANALYSIS APPROACH
Malleshappa N. Noolvi* and Harun M. Patel
Department of Pharmaceutical Chemistry, ASBASJSM College of
Pharmacy, Bela (Ropar)-14011, Punjab, India
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Date of Web Publication
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15-Aug-2010
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Corresponding Author*: E-mail: mnoolvi@yahoo.co.uk
ABSTRACT
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Epidermal growth factor receptor (EGFR) protein tyrosine kinases (PTKs) are known
for its role in cancer. Quinazoline have been reported to be the molecules of interest,
with potent anticancer activity and they act by binding to ATP site of protein kinases.
ATP binding site of protein kinases provides an extensive opportunity to design
newer analogs. With this background, we report an attempt to discern the structural
and physicochemical requirements for inhibition of EGFR tyrosine kinase. The k-Nearest
Neighbor Molecular Field Analysis (kNN-MFA), a three dimensional quantitative structure
activity relationship (3D- QSAR) method has been used in the present case to study
the correlation between the molecular properties and the tyrosine kinase (EGFR)
inhibitory activities on a series of quinazoline derivatives. kNN-MFA calculations
for both electrostatic and steric field were carried out. The master grid maps derived
from the best model has been used to display the contribution of electrostatic potential
and steric field. The statistical results showed significant correlation coefficient
r2 (q2) of 0.846, r2 for external test set (pred_r2)
0.8029, coefficient of correlation of predicted data set (pred_r2se)
of 0.6658, degree of freedom 89 and k nearest neighbor of 2.Therefore, this study
not only casts light on binding mechanism between EGFR and its inhibitors, but also
provides hints for the design of new EGFR inhibitors with observable structural
diversity.
KEYWORDS: Quinazoline, Tyrosine kinase (EGFR), k-Nearest Neighbor Molecular Field
Analysis (kNN-MFA).
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