Author(s): Connor M, Osborne PB, Christie MJ
Opioid tolerance and dependence are important phenomena. The contribution of acute mu-opioid receptor regulatory mechanisms to the development of analgesic tolerance or physical dependence are unknown, and even the mechanisms underlying relatively rapid receptor desensitization in single cells are unresolved. To a large degree, the uncertainty surrounding the mechanisms and consequences of short-term regulation of tau-opioid receptors in single cells arises from the limitations in the experimental design in many of the studies that have investigated these events. Receptor overexpression and use of assays in which regulatory mechanisms are likely to blunt control determinations have led to measurements of opioid receptor activity that are likely to be insensitive to receptor uncoupling. Together with uncertainties concerning molecular details of tau-opioid receptor interactions with potential regulatory molecules such as G protein-coupled receptor kinases and arrestins, we are left with an incomplete picture crudely copied from the well-worked-out regulatory schema for beta(2)-adrenoceptors. As a consequence, suggestions that clinically relevant tau-opioid receptor agonists may have different propensities to produce tolerance and dependence that arise from their differential recruitment of regulatory mechanisms are premature, and have not yet been appropriately assessed, nor explained in the context of a thoroughly established regulatory scheme. In this commentary, we outline the experimental limitations that have given rise to conflicting ideas about how mu-opioid receptors are regulated, and identify the issues we feel still need to be addressed before we can understand why morphine promotes receptor trafficking differently to other opioids.
Referred From: https://www.ncbi.nlm.nih.gov/pubmed/15504746
Author(s): Allouche S, Noble F, Marie N
Author(s): Schmid CL, Bohn LM
Author(s): Bohn LM, Lefkowitz RJ, Gainetdinov RR, Peppel K, Caron MG, et al.
Author(s): Bohn LM, Gainetdinov RR, Lin FT, Lefkowitz RJ, Caron MG, et al.
Author(s): Shenoy SK, Lefkowitz RJ
Author(s): Pradhan AA, Smith ML, Kieffer BL, Evans CJ
Author(s): McPherson J, Rivero G, Baptist M, Llorente J, Al-Sabah S, et al.
Author(s): Molinari P, Vezzi V, Sbraccia M, Grò C, Riitano D, et al.
Author(s): Zastrow von M, Keith DE, Evans CJ
Author(s): Keith DE, Anton B, Murray SR, Zaki PA, Chu PC, et al.
Author(s): Allouche S, Roussel M, Marie N, Jauzac P
Author(s): Marie N, Landemore G, Debout C, Jauzac P, Allouche S
Author(s): Lecoq I, Marie N, Jauzac P, Allouche S
Author(s): Polastron J, Mur M, Mazarguil H, Puget A, Meunier JC, et al.
Author(s): Allouche S, Hasbi A, Ferey V, Sola B, Jauzac P, et al.
Author(s): Aguila B, Roussel M, Jauzac P, Allouche S
Author(s): Aguila B, Coulbault L, Davis A, Marie N, Hasbi A, et al.
Author(s): Marie N, Lecoq I, Jauzac P, Allouche S
Author(s): Aguila B, Coulbault L, Boulouard M, Léveillé F, Davis A, et al.
Author(s): Fenalti G, Giguere PM, Katritch V, Huang XP, Thompson AA, et al.
Author(s): Jones G, Willett P, Glen RC, Leach AR, Taylor R, et al.
Author(s): Melief EJ, Miyatake M, Bruchas MR, Chavkin C
Author(s): Chu J, Zheng H, Loh HH, Law PY
Author(s): Dang VC, Napier IA, Christie MJ
Author(s): Wang Q, Liu-Chen LY, Traynor JR
Author(s): Marie N, Aguila B, Hasbi A, Davis A, Jauzac P, et al.
Author(s): Pan L, Gurevich EV, Gurevich VV
Author(s): Zhang X, Wang F, Chen X, Li J, Xiang B, et al.
Author(s): Qiu Y, Loh HH, Law PY
Author(s): Cen B, Xiong Y, Ma L, Pei G
Author(s): Tao PL, Law PY, Loh HH
Author(s): Turchan J, Przewlocka B, Toth G, LasonW, Borsodi A, et al.
Author(s): Hasbi A, Allouche S, Sichel F, Stanasila L, Massotte D, et al.
Author(s): Kelly E, Bailey CP, Henderson G
Author(s): Qiu Y, Law PY, Loh HH
Author(s): Quillinan N, Lau EK, Virk M, von Zastrow M, Williams JT
Author(s): Zhang L, Zhao H, Qiu Y, Loh HH, Law PY, et al.
Author(s): Zhang L, Loh HH, Law PY
Author(s): Luttrell LM, Ferguson SS, Daaka Y, Miller WE, Maudsley S, et al.
Author(s): Filizola M, Laakkonen L, Loew GH