Gussin Hélène A, Tomlinson Ian D, Little Deborah M, Warnement Michael R, Qian Haohua, Rosenthal Sandra J, Pepperberg David R
Lions of Illinois Eye Research Institute, Department of Ophthalmology and Visual Sciences, and Center for Cognitive Medicine, University of Illinois at Chicago, Chicago, Illinois 60612, USA.
J Am Chem Soc. 2006 Dec 13;128(49):15701-13. doi: 10.1021/ja064324k.
Functionalization of highly fluorescent CdSe/ZnS core-shell nanocrystals (quantum dots, qdots) is an emerging technology for labeling cell surface proteins. We have synthesized a conjugate consisting of approximately 150-200 muscimols (a GABA receptor agonist) covalently joined to the qdot via a poly(ethylene glycol) (PEG) linker (approximately 78 ethylene glycol units) and investigated the binding of this muscimol-PEG-qdot conjugate to homomeric rho1 GABAC receptors expressed in Xenopus oocytes. GABAC receptors mediate inhibitory synaptic signaling at multiple locations in the central nervous system (CNS). Binding of the conjugate was analyzed quantitatively by determining the fluorescence intensity of the oocyte surface membrane in relation to that of the surrounding incubation medium. Upon 5- to 10-min incubation with muscimol-PEG-qdots (34 nM in qdot concentration), GABAC-expressing oocytes exhibited a fluorescent halo at the surface membrane that significantly exceeded the fluorescence of the incubation medium. This halo was absent following muscimol-PEG-qdot treatment of oocytes lacking GABAC receptors. Incubation of the oocyte with free muscimol (100 microM-5 mM), PEG-muscimol (500 microM), or GABA (100 microM - 5 mM) substantially reduced or eliminated the fluorescence halo produced by muscimol-PEG-qdots, and the removal of GABA or free muscimol led to a recovery of muscimol-PEG-qdot binding. Unconjugated qdots and PEG-qdots that lacked conjugated muscimol neither exhibited significant binding activity nor diminished the subsequent binding of muscimol-PEG-qdots. The results indicate that muscimol joined to qdots via a long-chain PEG linker exhibits specific binding activity at the ligand-binding pocket of expressed GABAC receptors, despite the presence of both the long PEG linker and the sterically bulky qdot.
高荧光CdSe/ZnS核壳纳米晶体(量子点,qdots)的功能化是一种用于标记细胞表面蛋白的新兴技术。我们合成了一种共轭物,它由大约150 - 200个蝇蕈醇(一种GABA受体激动剂)通过聚乙二醇(PEG)连接子(大约78个乙二醇单元)共价连接到量子点上,并研究了这种蝇蕈醇-PEG-量子点共轭物与非洲爪蟾卵母细胞中表达的同源rho1 GABAC受体的结合情况。GABAC受体在中枢神经系统(CNS)的多个位置介导抑制性突触信号传导。通过测定卵母细胞表面膜相对于周围孵育培养基的荧光强度,对共轭物的结合进行了定量分析。用蝇蕈醇-PEG-量子点(量子点浓度为34 nM)孵育5至10分钟后,表达GABAC的卵母细胞在表面膜上呈现出一个荧光晕圈,其荧光强度显著超过孵育培养基的荧光。在对缺乏GABAC受体的卵母细胞进行蝇蕈醇-PEG-量子点处理后,这种晕圈不存在。用游离蝇蕈醇(100 microM - 5 mM)、PEG-蝇蕈醇(500 microM)或GABA(100 microM - 5 mM)孵育卵母细胞,可显著降低或消除蝇蕈醇-PEG-量子点产生的荧光晕圈,去除GABA或游离蝇蕈醇后,蝇蕈醇-PEG-量子点的结合得以恢复。未共轭的量子点和缺乏共轭蝇蕈醇的PEG-量子点既不表现出显著的结合活性,也不影响随后蝇蕈醇-PEG-量子点的结合。结果表明,通过长链PEG连接子连接到量子点上的蝇蕈醇在表达的GABAC受体的配体结合口袋处表现出特异性结合活性,尽管存在长PEG连接子和空间位阻较大的量子点。