Institute of Cell Signaling, The University of Nottingham Medical School, Queen's Medical Centre, Nottingham NG7 2UH, UK.
Mol Pharmacol. 2010 Apr;77(4):678-86. doi: 10.1124/mol.109.063065. Epub 2010 Jan 19.
Allosteric binding sites on the adenosine receptor family represent potential therapeutic targets for a number of conditions involving metabolic stress. This study has identified Brilliant Black BN as a novel allosteric modulator of the adenosine A(1) and A(3) receptors. In addition to being a food dye and pharmaceutical excipient, Brilliant Black BN is commonly used within calcium mobilization assays to quench extracellular fluorescence. Brilliant Black BN (5-500 microM) had no significant effect on the calcium mobilization stimulated by the nonselective adenosine receptor agonist 5'-(N-ethylcarboxamido)adenosine in Chinese hamster ovary cells stably transfected with the human adenosine A(1) or A(3) receptor. Likewise, calcium mobilization and radioligand binding assays found that Brilliant Black BN (5-500 microM) did not significantly influence the antagonism mediated by 8-cyclopentyl-1,3-dipropylxanthine (100 nM) at the A(1) receptor. In contrast, the affinity of N-[9-chloro-2-(2-furanyl)[1,2,4]-triazolo[1,5-c]quinazolin-5-yl]benzene acetamide (MRS1220) at the A(3) receptor and xanthine amine congener (XAC) and XAC-X-BY630 at the A(1) and A(3) receptors was significantly decreased in the presence of 500 muM Brilliant Black BN. A reduction in XAC potency at the A(1) and A(3) receptor was achieved within 1 min of Brilliant Black BN addition, despite receptors having been pre-equilibrated with antagonist. Dissociation kinetics of the fluorescent XAC derivative, XAC-X-BY630, revealed that the decrease in affinity is probably due to a significant increase in dissociation rate of the antagonist in the presence of Brilliant Black BN. Taken together, these results suggest that Brilliant Black BN can act allosterically to modify ligand affinity at A(1) and A(3) receptors.
别构结合位点在腺苷受体家族上代表了多种代谢应激相关疾病的潜在治疗靶点。本研究发现亮黑 BN 是一种新型的腺苷 A(1)和 A(3)受体的别构调节剂。除了作为食品染料和药物赋形剂外,亮黑 BN 还常用于钙动员测定中以淬灭细胞外荧光。亮黑 BN(5-500μM)对中国仓鼠卵巢细胞中稳定转染的人腺苷 A(1)或 A(3)受体的非选择性腺苷受体激动剂 5'-(N-乙基羧酰胺基)腺苷刺激的钙动员没有显著影响。同样,钙动员和放射性配体结合测定发现,亮黑 BN(5-500μM)不会显著影响 8-环戊基-1,3-二丙基黄嘌呤(100nM)在 A(1)受体上介导的拮抗作用。相比之下,N-[9-氯-2-(2-呋喃基)[1,2,4]-三唑[1,5-c]喹唑啉-5-基]苯乙酰胺(MRS1220)在 A(3)受体上的亲和力以及黄嘌呤胺类似物(XAC)和 XAC-X-BY630 在 A(1)和 A(3)受体上的亲和力在存在 500μM 亮黑 BN 时显著降低。尽管受体已经与拮抗剂预平衡,但在亮黑 BN 加入 1 分钟内,XAC 在 A(1)和 A(3)受体上的效力就降低了。XAC-X-BY630 的荧光衍生物的离解动力学表明,亲和力的降低可能是由于在亮黑 BN 存在下拮抗剂的离解速率显著增加。总之,这些结果表明亮黑 BN 可以作为别构调节剂来改变 A(1)和 A(3)受体上的配体亲和力。