Quick Matthias, Javitch Jonathan A
Center for Molecular Recognition and Departments of Psychiatry and Pharmacology, Columbia University College of Physicians and Surgeons, New York, NY 10032, USA.
Proc Natl Acad Sci U S A. 2007 Feb 27;104(9):3603-8. doi: 10.1073/pnas.0609573104. Epub 2007 Feb 20.
Transport proteins constitute approximately 10% of most proteomes and play vital roles in the translocation of solutes across membranes of all organisms. Their (dys)function is implicated in many disorders, making them frequent targets for pharmacotherapy. The identification of substrates for members of this large protein family, still replete with many orphans of unknown function, has proven difficult, in part because high-throughput screening is greatly complicated by endogenous transporters present in many expression systems. In addition, direct structural studies require that transporters be extracted from the membrane with detergent, thereby precluding transport measurements because of the lack of a vectorial environment and necessitating reconstitution into proteoliposomes for activity measurements. Here, we describe a direct scintillation proximity-based radioligand-binding assay for determining transport protein function in crude cell extracts and in purified form. This rapid and universally applicable assay with advantages over cell-based platforms will greatly facilitate the identification of substrates for many orphan transporters and allows monitoring the function of transport proteins in a nonmembranous environment.
转运蛋白约占大多数蛋白质组的10%,在所有生物体的溶质跨膜转运中发挥着至关重要的作用。它们的(功能失调)与许多疾病有关,使其成为药物治疗的常见靶点。事实证明,要鉴定这个庞大蛋白质家族成员的底物很困难,该家族仍有许多功能未知的孤儿成员,部分原因是许多表达系统中存在的内源性转运蛋白使高通量筛选变得极为复杂。此外,直接的结构研究要求用去污剂从膜中提取转运蛋白,从而由于缺乏矢量环境而无法进行转运测量,并且需要重新组装到蛋白脂质体中进行活性测量。在这里,我们描述了一种基于闪烁接近法的直接放射性配体结合测定法,用于确定粗细胞提取物和纯化形式的转运蛋白功能。这种快速且普遍适用的测定法比基于细胞的平台具有优势,将极大地促进许多孤儿转运蛋白底物的鉴定,并允许在非膜环境中监测转运蛋白的功能。