Sokias Renee, Werry Eryn L, Chua Sook W, Reekie Tristan A, Munoz Lenka, Wong Erick C N, Ittner Lars M, Kassiou Michael
School of Chemistry , The University of Sydney , NSW 2006 , Australia . Email:
Faculty of Health Sciences , The University of Sydney , NSW 2006 , Australia.
Medchemcomm. 2016 Nov 15;8(1):202-210. doi: 10.1039/c6md00523c. eCollection 2017 Jan 1.
The 18 kDa translocator protein (TSPO) is a target for development of diagnostic imaging agents for glioblastoma and neuroinflammation. Clinical translation of TSPO imaging agents has been hindered by the presence of a polymorphism, rs6971, which causes a non-conservative substitution of alanine for threonine at amino acid residue 147 (TSPO A147T). Disclosed brain-permeant second-generation TSPO ligands bind TSPO A147T with reduced affinity compared to the wild type protein (TSPO WT). Efforts to develop a TSPO ligand that binds TSPO WT and TSPO A147T with similarly high affinity have been hampered by a lack of knowledge about how ligand structure differentially influences interaction with the two forms of TSPO. To gain insight, we have established human embryonic kidney cell lines stably over-expressing human TSPO WT and TSPO A147T, and tested how modifications of a novel -alkylated carbazole scaffold influence affinity to both TSPO isoforms. Most of the new analogues developed in this study showed high affinity to TSPO WT and a 5-6-fold lower affinity to TSPO A147T. Addition of electron-withdrawing substituents yielded analogues with highest affinity for TSPO A147T without decreasing affinity for TSPO WT. This knowledge can be used to inform further development of non-discriminating TSPO ligands for use as diagnostic markers for glioblastoma and neuroinflammation irrespective of rs6971.
18 kDa转位蛋白(TSPO)是胶质母细胞瘤和神经炎症诊断成像剂开发的靶点。TSPO成像剂的临床转化受到一种多态性rs6971的阻碍,该多态性导致氨基酸残基147处的苏氨酸被丙氨酸非保守性取代(TSPO A147T)。已公开的脑渗透性第二代TSPO配体与野生型蛋白(TSPO WT)相比,与TSPO A147T的结合亲和力降低。由于缺乏关于配体结构如何差异影响与两种形式的TSPO相互作用的知识,开发与TSPO WT和TSPO A147T具有相似高亲和力的TSPO配体的努力受到了阻碍。为了深入了解,我们建立了稳定过表达人TSPO WT和TSPO A147T的人胚肾细胞系,并测试了新型烷基化咔唑支架的修饰如何影响对两种TSPO异构体的亲和力。本研究中开发的大多数新类似物对TSPO WT显示出高亲和力,而对TSPO A147T的亲和力低5至6倍。添加吸电子取代基产生了对TSPO A147T具有最高亲和力且不降低对TSPO WT亲和力的类似物。这些知识可用于指导进一步开发不具有区分性的TSPO配体,用作胶质母细胞瘤和神经炎症的诊断标志物,而不考虑rs6971。