Toward the discovery of vaccine adjuvants:coupling in silico screening and in vitro analysis of antagonist binding to human and mouse CCR4 receptors


Autoria(s): Davies, Matthew N.; Bayry, Jagadeesh; Tchilian, Elma Z.; Vani, Janakiraman; Shaila, Melkote S.; Forbes, Emily K.; Draper, Simon J.; Beverley, Peter C.L.; Tough, David F.; Flower, Darren R.
Data(s)

30/11/2009

Resumo

Background Adjuvants enhance or modify an immune response that is made to an antigen. An antagonist of the chemokine CCR4 receptor can display adjuvant-like properties by diminishing the ability of CD4+CD25+ regulatory T cells (Tregs) to down-regulate immune responses. Methodology Here, we have used protein modelling to create a plausible chemokine receptor model with the aim of using virtual screening to identify potential small molecule chemokine antagonists. A combination of homology modelling and molecular docking was used to create a model of the CCR4 receptor in order to investigate potential lead compounds that display antagonistic properties. Three-dimensional structure-based virtual screening of the CCR4 receptor identified 116 small molecules that were calculated to have a high affinity for the receptor; these were tested experimentally for CCR4 antagonism. Fifteen of these small molecules were shown to inhibit specifically CCR4-mediated cell migration, including that of CCR4+ Tregs. Significance Our CCR4 antagonists act as adjuvants augmenting human T cell proliferation in an in vitro immune response model and compound SP50 increases T cell and antibody responses in vivo when combined with vaccine antigens of Mycobacterium tuberculosis and Plasmodium yoelii in mice.

Formato

application/pdf

Identificador

http://eprints.aston.ac.uk/16557/1/Toward_the_Discovery_of_Vaccine_Adjuvants.pdf

Davies, Matthew N.; Bayry, Jagadeesh; Tchilian, Elma Z.; Vani, Janakiraman; Shaila, Melkote S.; Forbes, Emily K.; Draper, Simon J.; Beverley, Peter C.L.; Tough, David F. and Flower, Darren R. (2009). Toward the discovery of vaccine adjuvants:coupling in silico screening and in vitro analysis of antagonist binding to human and mouse CCR4 receptors. PLoS ONE, 4 (11),

Relação

http://eprints.aston.ac.uk/16557/

Tipo

Article

PeerReviewed