Abstract

AbstractImmuno-modulation is the process of alteration in immune response due to foreign intrusion of molecules inside the body. In the present communication QSAR and molecular docking studies for immuno-modulatory activity of derivatives of gallic acid were performed. Molecular docking studies showed higher binding affinity with INFα-2, IL-6, and IL-4 receptors. Binding site residues indicate hydrogen bonds formation with gallic acid derivative compounds G-3, G-4, G-5, G-6, G-7 and G-10. Further screening through quantitative structure activity relationship model establishes the immuno-modulatory activity of the compounds G-4, G-7, G-9, G-10, G-12 and G-13. Activity was predicted through a robust statistical model, developed by forward feed multiple linear regression method with leave-one-out approach. Relationship correlating measure (r2) and prediction accuracy (rCV2) of QSAR model were 0.99 and 0.96, respectively. QSAR studies indicate that dipole moment, steric energy, amide group count, λ max (UV-visible) and molar refractivity correlate well with their activities, while decrease in dipole moment, steric energy and molar refractivity have negative correlation. Moreover, on the basis of bioavailability, in-silico ADME and toxicity risk assessment screening, we concluded that compounds G-4, G-7, G-9, G-10, G-12 and G-13 have marked immuno-modulatory activity comparable to standard drugs.

Highlights

  • Minimized all the molecules and calculate the descriptors for regression analyses Developed the mathematical multiple linear regression QSAR model for immunomodulatry activity

  • Compound G-10 docked on INFα-2 with docking energy -70.26 kcal/mol and H-bond of 2.029 Å to binding pocket residue GLU-108

  • Compound G-7 docked on INFα-2 with docking energy 60.59 kcal/mol and H-bond of 2.167 Å to binding pocket residue LYS-15

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Summary

QSAR studies

Predicted log LD50 (mg/kg) = -0.156436 * Dipole Moment (debye) -0.00118794 * Steric Energy (kcal/mole). +0.910351 * Amide group count +0.0206362 * λ max (UV-visible) (nm) -0.00834447 * Molar Refractivity. Predicted activity by the constructed satisfactory predictive ability model areCinMgToPoI d20w1i1t,hStehpetSeelmoxpvbeeenrriima3-e7n, t2a0l1d1atMa,asruibgogre, sting that these model should have a

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