一种用于神经节苷类生物合成标记的双荧光-拉曼生物正交探针。

John Hanover, Mana Mukherjee, Matthew Watson, Devin Biesbrock, Lara Abramowitz, Steven Drake, Jennifer Lee
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引用次数: 0

摘要

神经节苷是一种含唾液酸的鞘脂,是细胞膜的组成部分,在神经系统中含量特别丰富。神经节苷脂代谢异常导致病理状况,包括神经退行性疾病、溶酶体贮积障碍和癌症。目前,可视化和检测神经节苷脂的工具非常有限且非特异性。在这里,我们描述了一种双荧光和拉曼活性的ManNAlk衍生物,菲-9- pr4mannalk (MM-JH-2),能够一步选择性标记细胞中的神经节苷脂。这种修饰的ManNAlk衍生物产生了生物学上独特的拉曼光谱特征,这是由碳碳三键通过共轭到荧光菲部分而增强的。通过使用这种双探针,在细胞内实现了明确的识别。利用炔拉伸频率生成的拉曼图显示MM-JH-2分布与细胞膜内脂质重叠。使用共聚焦荧光成像,标记神经节苷的细胞运输被跟踪从合成到回收在酸性室。值得注意的是,MM-JH-2可以区分神经节苷脂生物合成通量不同的细胞,如恶性细胞和非恶性细胞,也可以区分B细胞和T细胞。因此,MM-JH-2是一种新型的下一代代谢化学报告基因(MCR),具有拉曼活性和荧光特性,可广泛应用于神经节苷脂生物合成通量的细胞研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Dual Fluorescent-Raman Bioorthogonal Probe for Specific Biosynthetic Labeling of Gangliosides.

Gangliosides are sialic acid-containing glycosphingolipids integral to the cell membrane and are particularly abundant in the nervous system. Aberrant ganglioside metabolism contributes to pathological conditions including neurodegenerative diseases, lysosomal storage disorders, and cancer. Currently, tools to visualize and detect gangliosides are very limited and non-specific. Here, we describe a dual fluorescent and Raman-active ManNAlk derivative, phenanthrene-9-Pr4ManNAlk (MM-JH-2), capable of one-step selective labeling of gangliosides in cells. This modified ManNAlk derivative produces a biologically unique Raman spectral signature, which arise from the carbon-carbon triple bond augmented by conjugation to a fluorescent phenanthrene moiety. By using this dual probe, unambiguous identification is achieved within cells. Raman maps generated using the alkyne stretching frequency indicate a distribution of MM-JH-2 overlapping with intracellular membrane lipids. Using confocal fluorescence imaging, the cellular transport of labeled gangliosides was tracked from synthesis to recycling in the acidic compartments. Notably, MM-JH-2 can differentiate between cells that differ in ganglioside biosynthetic flux, such as malignant and nonmalignant cells, as well as distinguish between B cells and T cells. Thus, MM-JH-2 is a novel next-generation metabolic chemical reporter (MCR) that is Raman-active, fluorescent, and can be broadly applied to cellular studies investigating ganglioside biosynthetic flux.

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