Fang Ye, Peng Jinlin, Ferrie Ann M, Burkhalter Robert S
Biochemical Technologies, Science and Technology Division, Corning Incorporated, Sullivan Park, Corning, New York 14831, USA.
Anal Chem. 2006 Jan 1;78(1):149-55. doi: 10.1021/ac0514164.
This paper described novel strategies to achieve air-stable G protein-coupled receptor (GPCR) microarrays and the uses of the microarrays for ligand profiling. Specifically, GPCR cell membrane fragments were suspended in a buffered solution containing bovine serum albumin (BSA) and disaccharide sucrose or trehalose and used for fabricating GPCR microarrays. During the array fabrication and postfabrication processes, BSA molecules were found to effectively form packed layer(s) surrounding the GPCR membranes immobilized onto the predetermined printing area, thereby stabilizing the membrane microspots. The use of disaccharides was shown to protect the integrity and functionality of GPCR microarrays from the typical deterioration of the membranes when fabricated and stored under dry conditions. To utilize the ability of fluorescence technology for multichannel detection as well as to maximize the capability of GPCR microarrays for multiplexed binding assays, several fluorescently labeled ligands were synthesized and optimized for multiplexing binding assays. A schematic microarray of five GPCRs had been used as a model for characterizing the association and dissociation rate constants of labeled ligands binding to their respective receptors in the microarrays. Interestingly, distinct receptor-ligand interactions exhibited different dependence on the type of pH reagent as well as the species and concentration of cations used in a binding assay buffered solution. The potential mechanisms and implications for the uses of air-stable GPCR microarrays were discussed.
本文描述了实现空气稳定的G蛋白偶联受体(GPCR)微阵列的新策略以及该微阵列在配体分析中的应用。具体而言,将GPCR细胞膜片段悬浮于含有牛血清白蛋白(BSA)和二糖蔗糖或海藻糖的缓冲溶液中,用于制备GPCR微阵列。在阵列制备和制备后过程中,发现BSA分子能有效地在固定于预定打印区域的GPCR膜周围形成堆积层,从而稳定膜微点。结果表明,在干燥条件下制备和储存时,二糖的使用可保护GPCR微阵列的完整性和功能,防止膜的典型降解。为了利用荧光技术进行多通道检测的能力,并最大限度地提高GPCR微阵列用于多重结合测定的能力,合成并优化了几种荧光标记的配体用于多重结合测定。一个包含五个GPCR的示意性微阵列已被用作模型,用于表征标记配体与其在微阵列中各自受体结合的缔合和解离速率常数。有趣的是,不同的受体-配体相互作用对结合测定缓冲溶液中使用的pH试剂类型以及阳离子的种类和浓度表现出不同的依赖性。文中还讨论了空气稳定的GPCR微阵列应用的潜在机制和意义。