DEVCOM Army Research Laboratory, Biotechnology Branch, 2800 Powder Mill Road, Adelphi, MD, 20783, United States.
DEVCOM Army Research Laboratory, Biotechnology Branch, 2800 Powder Mill Road, Adelphi, MD, 20783, United States.
Colloids Surf B Biointerfaces. 2021 Jul;203:111730. doi: 10.1016/j.colsurfb.2021.111730. Epub 2021 Apr 1.
Biocompatible approaches to labeling bacteria with fluorescent nanoparticles are essential in order to create living bacterial bioconjugates for imaging, biosensors, medicine, and other applications. Herein we report the direct conjugation of carboxyl quantum dots (QDs) with E. coli outer membrane via surface-displayed binding peptides. The histidine-containing peptide H6G9 was displayed at the N-terminus of membrane-embedded enhanced circularly permuted outer membrane protein X (eCPX) scaffold, which was expressed upon chemical induction. The presence of the binding peptide creates an environment distinct from the negatively charged E. coli surface and provides strong binding affinity to carboxyl quantum dots (QDs). Transmission electron microscopy (TEM) analysis of E. coli-QD bioconjugates revealed high loading densities of these QDs immobilized on the cell surface, even when adding a very low concentration (10 μg/mL) of QDs in order to reduce the cell exposure. These hybrid cells strongly fluoresce with each of the distinct colors of loaded QDs with different emission wavelengths, which can be easily visualized by fluorescence microscopy or differentiated using flow cytometry. Importantly, the E. coli-QD bioconjugates were highly viable and maintained the ability to grow and divide. This study demonstrates a simple, direct, and highly efficient method for labelling bacteria with QDs, without significantly compromising the vitality of the cells.
为了制备用于成像、生物传感器、医学和其他应用的活细菌生物缀合物,将荧光纳米粒子与细菌进行生物相容性标记至关重要。在此,我们报告了通过表面展示的结合肽将羧基量子点(QD)直接与大肠杆菌外膜偶联。含有组氨酸的肽 H6G9 展示在膜嵌入式增强型循环排列的外膜蛋白 X(eCPX)支架的 N 端,该支架在化学诱导下表达。结合肽的存在创造了与带负电荷的大肠杆菌表面不同的环境,并提供了与羧基量子点(QD)的强结合亲和力。对大肠杆菌-QD 生物缀合物的透射电子显微镜(TEM)分析表明,即使在添加非常低浓度(10 μg/mL)的 QD 以降低细胞暴露时,这些 QD 也能以高负载密度固定在细胞表面上。这些杂交细胞用每种负载 QD 的独特颜色强烈荧光,通过荧光显微镜很容易观察到,或者通过流式细胞术进行区分。重要的是,大肠杆菌-QD 生物缀合物具有高度活力,并保持生长和分裂的能力。这项研究展示了一种简单、直接、高效的方法,可将 QD 标记到细菌上,而不会显著降低细胞的活力。