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新型花菁标记细菌脂寡糖的合成及其在细胞内成像和体外显微镜研究中的应用。

Synthesis of the New Cyanine-Labeled Bacterial Lipooligosaccharides for Intracellular Imaging and in Vitro Microscopy Studies.

机构信息

Biomolecular Photonics, Department of Physics , University of Bielefeld . Universitätsstraße 25 , 33615 Bielefeld , Germany.

Department of Biotechnology and Biosciences , University of Milano-Bicocca . Piazza della Scienza, 2 , 20126 Milano , Italy.

出版信息

Bioconjug Chem. 2019 Jun 19;30(6):1649-1657. doi: 10.1021/acs.bioconjchem.9b00044. Epub 2019 Jun 11.

Abstract

Endotoxin (lipooligosaccharide, LOS, and lipopolysaccharide, LPS) is the major molecular component of Gram-negative bacteria outer membrane, and very potent pro-inflammatory substance. Visualizing and tracking the distribution of the circulating endotoxin is one of the fundamental approaches to understand the molecular aspects of infection with subsequent inflammatory and immune responses, LPS also being a key player in the molecular dialogue between microbiota and host. While fluorescently labeled LPS has previously been used to track its subcellular localization and colocalization with TLR4 receptor and downstream effectors, our knowledge on lipopolysaccharide (LOS) localization and cellular activity remains almost unexplored. In this study, LOS was labeled with a novel fluorophore, Cy7N, featuring a large Stokes-shifted emission in the deep-red spectrum resulting in lower light scattering and better imaging contrast. The LOS-Cy7N chemical identity was determined by mass spectrometry, and immunoreactivity of the conjugate was evaluated. Interestingly, its application to microscopic imaging showed a faster cell internalization compared to LPS-Alexa488, despite that it is also CD14-dependent and undergoes the same endocytic pathway as LPS toward lysosomal detoxification. Our results suggest the use of the new infrared fluorophore Cy7N for cell imaging of labeled LOS by confocal fluorescence microscopy, and propose that LOS is imported in the cells by mechanisms different from those responsible for LPS uptake.

摘要

内毒素(脂寡糖、LOS 和脂多糖、LPS)是革兰氏阴性菌外膜的主要分子成分,也是一种非常有效的促炎物质。可视化和跟踪循环内毒素的分布是了解感染后炎症和免疫反应分子方面的基本方法之一,LPS 也是微生物群和宿主之间分子对话的关键参与者。虽然荧光标记的 LPS 以前曾被用于追踪其亚细胞定位及其与 TLR4 受体和下游效应子的共定位,但我们对内毒素(LOS)定位和细胞活性的了解几乎仍未得到探索。在这项研究中,LOS 用一种新型荧光染料 Cy7N 进行了标记,该染料在深红光光谱中具有较大的Stokes 位移发射,从而导致光散射更低,成像对比度更好。通过质谱法确定了 LOS-Cy7N 的化学特性,并评估了其缀合物的免疫反应性。有趣的是,与 LPS-Alexa488 相比,尽管它也是 CD14 依赖性的,并通过与 LPS 相同的内吞途径进入溶酶体解毒,但它在细胞内的内化速度更快。我们的研究结果表明,新的近红外荧光染料 Cy7N 可用于通过共聚焦荧光显微镜对标记的 LOS 进行细胞成像,并提出 LOS 是通过与 LPS 摄取不同的机制进入细胞的。

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