@article { , title = {A monoclonal antibody raised against a thermo-stabilised ?1-adrenoceptor interacts with extracellular loop 2 and acts as a negative allosteric modulator of a sub-set of 1- adrenoceptors expressed in stable cell lines}, abstract = {Recent interest has focused on antibodies that can discriminate between different receptor conformations. Here we have characterised the effect of a monoclonal antibody (mAb3), raised against a purified thermo-stabilised turkey ?1-adrenoceptor (?1AR-m23 StaR), on ?1-ARs expressed in CHO-K1 or HEK 293 cells. Immunohistochemical and radioligand-binding studies demonstrated that mAb3 was able to bind to ECL2 of the t?1-AR, but not its human homologue. Specific binding of mAb3 to t?1-AR was inhibited by a peptide based on the turkey, but not the human, ECL2 sequence. Studies with [3H]-CGP 12177 demonstrated that mAb3 prevented the binding of orthosteric ligands to a subset (circa 40\%) of turkey ?1-receptors expressed in both CHO K1 and HEK 293 cells. MAb3 significantly reduced the maximum specific binding capacity of [3H]-CGP-12177 without influencing its binding affinity. Substitution of ECL2 of t?1-AR with its human equivalent, or mutation of residues D186S, P187D, Q188E prevented the inhibition of [3H]-CGP 12177 binding by mAb3. MAb3 also elicited a negative allosteric effect on agonist-stimulated cAMP responses. The identity of the subset of turkey ?1-adrenoceptors influenced by mAb3 remains to be established but mAb3 should become an important tool to investigate the nature of ?1-AR conformational states and oligomeric complexes.}, doi = {10.1016/j.bcp.2017.10.015}, eissn = {1873-2968}, issn = {0006-2952}, journal = {Biochemical Pharmacology}, publicationstatus = {Published}, publisher = {Elsevier}, url = {https://nottingham-repository.worktribe.com/output/907985}, volume = {147}, keyword = {GPCR, Allosterism, Monoclonal antibody, Extracellular loop 2}, year = {2018}, author = {Soave, Mark and Cseke, Gabriella and Hutchings, Catherine J. and Brown, Alastair J.H. and Woolard, Jeanette and Hill, Stephen J.} }