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Quantum Dot Targeting with Lipoic Acid Ligase and HaloTag for Single-Molecule Imaging on Living Cells

机译:用硫辛酸连接酶和HaloTag进行量子点靶向用于活细胞的单分子成像

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摘要

We present a methodology for targeting quantum dots to specific proteins on living cells in two steps. In the first step, Escherichia coli lipoic acid ligase (LplA) site-specifically attaches 10-bromodecanoic acid onto a 13 amino acid recognition sequence that is genetically fused to a protein of interest. In the second step, quantum dots derivatized with HaloTag, a modified haloalkane dehalogenase, react with the ligated bromodecanoic acid to form a covalent adduct. We found this targeting method to be specific, fast, and fully orthogonal to a previously reported and analogous quantum dot targeting method using E. coli biotin ligase and streptavidin. We used these two methods in combination for two-color quantum dot visualization of different proteins expressed on the same cell or on neighboring cells. Both methods were also used to track single molecules of neurexin, a synaptic adhesion protein, to measure its lateral diffusion in the presence of neuroligin, its trans-synaptic adhesion partner.
机译:我们提出了一种将量子点靶向活细胞上特定蛋白质的方法,需要两个步骤。第一步,大肠杆菌硫辛酸连接酶(LplA)将10-溴脱氢古铜酸位点特异性地附着到13个氨基酸的识别序列上,该序列与目标蛋白质遗传融合。在第二步中,用HaloTag(一种修饰的卤代烷脱卤酶)衍生的量子点与连接的溴代高桥酸反应形成共价加合物。我们发现这种靶向方法与使用大肠杆菌生物素连接酶和链霉亲和素的先前报道的和类似的量子点靶向方法相比具有特异性,快速且完全正交。我们将这两种方法结合使用,可以对在同一细胞或相邻细胞上表达的不同蛋白质进行双色量子点可视化。两种方法都还用于追踪神经素(一种突触粘附蛋白)的单分子,以测量在其跨突触粘附伴侣Neuroligin存在下的横向扩散。

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