EaStCHEM School of Chemistry, University of Edinburgh, Joseph Black Building, Edinburgh EH8 9YL, UK.
Molecules. 2021 Jan 12;26(2):354. doi: 10.3390/molecules26020354.
The cellular plasma membrane plays a fundamental role in biological processes, including cell growth, signaling and transport. The labelling of the plasma membrane with targeted fluorescent probes offers a convenient and non-invasive way to image the morphological changes and dynamics of a membrane in real-time and, despite many examples of fluorescent plasma membrane probes, a "universal targeting/anchoring moiety" is still required. In this study, a small number of stearic acid-based probes labelled with 6-carboxyfluorescein was designed and fabricated via solid-phase synthesis in which variations in both charge and hydrophobicity were explored. To ease the synthesis process, a gram-scale synthesis of the Fmoc-Lys(6-carboxyfluoresein diacetate)-OH building block was developed, allowing the discovery of optimal probes that carried a positively charged amino group and a stearic acid tail that exhibited intense plasma membrane brightness and robust retention.
细胞质膜在细胞生长、信号转导和物质运输等生物过程中起着至关重要的作用。用靶向荧光探针对质膜进行标记,为实时成像质膜的形态变化和动力学提供了一种方便且非侵入性的方法。尽管已经有许多荧光质膜探针的例子,但仍需要一种“通用的靶向/锚定部分”。在这项研究中,通过固相合成设计并制备了少量基于硬脂酸的探针,其中探索了电荷和疏水性的变化。为了简化合成过程,开发了 Fmoc-Lys(6-羧基荧光素二乙酸酯)-OH 砌块的克级合成方法,从而发现了最佳探针,这些探针带有带正电荷的氨基和硬脂酸尾巴,表现出强烈的质膜亮度和稳定的保留性。