Prediction of Glycine/Nmda Receptor Antagonism (Paperback)

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The book comprises detailed Comparative QSAR and Molecular Docking Simulation study on selective glycine/NMDA receptor antagonists. Multiple regression Hansch analysis was conducted on fourteen diverse series. Equations generated were internally, externally and laterally validated. They indicated the importance of lipophilic, electronic and steric parameters of various substituents on quinoxalines, quinoxalin-4-ones and quinazoline-2-carboxylates. Comparison among equations with scaled CMR parameter indicated involvement of unique dual allosteric (normal and inverse) effects. Such allosterism in glycine/NMDA receptor has not been reported before. Inversion point in both relationships was amazingly 10. Accuracy in prediction of biological activity of compounds with aromatic substituents in docking simulations could not be calculated irrespective of their presence in either upward or downward legs of both closed and open parabola. This is suggestive of a mechanism wherein aromatic substituents are involved in changing the shape of active site residues of the glycine subsite. Based on non-linear closed parabolic relationships, some new promising molecules were proposed.

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Product Description

The book comprises detailed Comparative QSAR and Molecular Docking Simulation study on selective glycine/NMDA receptor antagonists. Multiple regression Hansch analysis was conducted on fourteen diverse series. Equations generated were internally, externally and laterally validated. They indicated the importance of lipophilic, electronic and steric parameters of various substituents on quinoxalines, quinoxalin-4-ones and quinazoline-2-carboxylates. Comparison among equations with scaled CMR parameter indicated involvement of unique dual allosteric (normal and inverse) effects. Such allosterism in glycine/NMDA receptor has not been reported before. Inversion point in both relationships was amazingly 10. Accuracy in prediction of biological activity of compounds with aromatic substituents in docking simulations could not be calculated irrespective of their presence in either upward or downward legs of both closed and open parabola. This is suggestive of a mechanism wherein aromatic substituents are involved in changing the shape of active site residues of the glycine subsite. Based on non-linear closed parabolic relationships, some new promising molecules were proposed.

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Product Details

General

Imprint

Lap Lambert Academic Publishing

Country of origin

Germany

Release date

July 2012

Availability

Expected to ship within 10 - 15 working days

First published

July 2012

Authors

, ,

Dimensions

229 x 152 x 13mm (L x W x T)

Format

Paperback - Trade

Pages

232

ISBN-13

978-3-659-17972-3

Barcode

9783659179723

Categories

LSN

3-659-17972-8



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