Department of Biological, Chemical and Physical Sciences, Illinois Institute of Technology, Chicago, IL 60616, USA.
Bioconjug Chem. 2012 Apr 18;23(4):705-13. doi: 10.1021/bc200343u. Epub 2012 Mar 29.
Photoresponsive bioconjugation empowers the development of novel methods for drug discovery, disease diagnosis, and high-throughput screening, among others. In this paper, we report on the characteristics of a traceless photocleavable cross-linker, di-6-(3-succinimidyl carbonyloxymethyl-4-nitro-phenoxy)-hexanoic acid disulfide diethanol ester (SCNE). The traceless feature and the biocompatibility of this photocleavable cross-linking reagent were corroborated. Consequently, we demonstrated its application in reversible phage particle immobilization that could provide a platform for direct single-phage screening. We also applied it in protein-photoprinting, where SCNE acts as a "photo-eraser" to remove the cross-linked protein molecules at a desired region in a simple, clean, and light-controllable fashion. We further demonstrated the two-tier atomic force microscopic (AFM) method that uses SCNE to carry out two subsequent AFM tasks in situ. The approach allows guided protein delivery and subsequent high-resolution imaging at the same local area, thus opening up the possibility of monitoring protein functions in live cells. The results imply that SCNE is a versatile cross-linker that can be used for a wide range of applications where photocleavage ensures clean and remote-controllable release of biological molecules from a substrate.
光响应生物共轭赋予了药物发现、疾病诊断和高通量筛选等领域新方法的发展。在本文中,我们报告了一种无痕光裂解交联剂二-6-(3-琥珀酰亚胺基羰基氧甲基-4-硝基苯氧基)-己二酸二硫代二乙醇酯(SCNE)的特性。该光裂解交联试剂具有无痕和生物相容性的特点。因此,我们证明了它在可逆噬菌体颗粒固定化中的应用,这为直接单噬菌体筛选提供了一个平台。我们还将其应用于蛋白质光印刷,其中 SCNE 作为“光橡皮擦”,以简单、清洁和光可控的方式在所需区域去除交联的蛋白质分子。我们进一步展示了使用 SCNE 原位进行两个后续原子力显微镜 (AFM) 任务的两级 AFM 方法。该方法允许在同一局部区域引导蛋白质递送到随后的高分辨率成像,从而为监测活细胞中蛋白质功能开辟了可能性。结果表明,SCNE 是一种多功能交联剂,可用于广泛的应用领域,其中光裂解可确保生物分子从基底上的干净和远程可控释放。