Jao Cindy Y, Roth Mary, Welti Ruth, Salic Adrian
Department of Cell Biology, Harvard Medical School, 240 Longwood Avenue, Boston, MA 02115 (USA).
Chembiochem. 2015 Feb 9;16(3):472-6. doi: 10.1002/cbic.201402149. Epub 2015 Jan 13.
Phospholipids with a choline head group are abundant components of all biological membranes, performing critical functions in cellular structure, metabolism, and signaling. In spite of their importance, our ability to visualize choline phospholipids in vivo remains very limited. We present a simple and robust chemical strategy to image choline phospholipids, based on the metabolic incorporation of azidocholine analogues, that accurately reflects the normal biosynthetic incorporation of choline into cellular phospholipids. Azidocholine-labeled phospholipids can be imaged in cells with high sensitivity and resolution, following derivatization with fluorophores, by bio-orthogonal chemical reactions compatible with live-cell imaging. We used this method to visualize the subcellular localization of choline phospholipids. We also demonstrate that double metabolic labeling with azidocholine and propargylcholine allows sensitive two-color imaging of choline phospholipids. Our method represents a powerful approach to directly image phospholipids, and to study their dynamics in cells and tissues.
带有胆碱头部基团的磷脂是所有生物膜的丰富组成成分,在细胞结构、代谢和信号传导中发挥着关键作用。尽管它们很重要,但我们在体内可视化胆碱磷脂的能力仍然非常有限。我们提出了一种简单且稳健的化学策略来对胆碱磷脂进行成像,该策略基于叠氮胆碱类似物的代谢掺入,能准确反映胆碱正常生物合成掺入细胞磷脂的情况。叠氮胆碱标记的磷脂在用荧光团衍生化后,可通过与活细胞成像兼容的生物正交化学反应,在细胞中以高灵敏度和分辨率进行成像。我们使用这种方法来可视化胆碱磷脂的亚细胞定位。我们还证明,用叠氮胆碱和炔丙基胆碱进行双重代谢标记可实现胆碱磷脂的灵敏双色成像。我们的方法是直接对磷脂进行成像以及研究其在细胞和组织中动态变化情况的有力手段。