Department of Chemical and Biomolecular Engineering, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.
J Lipid Res. 2013 Jan;54(1):265-75. doi: 10.1194/jlr.D029207. Epub 2012 Nov 4.
Sphingolipids function as cell membrane components and as signaling molecules that regulate critical cellular processes. To study unacylated and acylated sphingolipids in cells with fluorescence microscopy, the fluorophore in the analog must be located within the sphingoid backbone and not the N-acyl fatty acid side chain. Although such fluorescent sphingosine analogs have been reported, they either require UV excitation or their emission overlaps with that of the most common protein label, green fluorescent protein (GFP). We report the synthesis and use of a new fluorescent sphingolipid analog, borondipyrromethene (BODIPY) 540 sphingosine, which has an excitation maximum at 540 nm and emission that permits its visualization in parallel with GFP. Mammalian cells readily metabolized BODIPY 540 sphingosine to more complex fluorescent sphingolipids, and subsequently degraded these fluorescent sphingolipids via the native sphingolipid catabolism pathway. Visualization of BODIPY 540 fluorescence in parallel with GFP-labeled organelle-specific proteins showed the BODIPY 540 sphingosine metabolites were transported through the secretory pathway and were transiently located within lysosomes, mitochondria, and the nucleus. The reported method for using BODIPY 540 sphingosine to visualize sphingolipids in parallel with GFP-labeled proteins within living cells may permit new insight into sphingolipid transport, metabolism, and signaling.
鞘脂类作为细胞膜的组成部分和信号分子发挥作用,调节关键的细胞过程。为了用荧光显微镜研究细胞中的未酰化和酰化鞘脂,类似物中的荧光团必须位于神经鞘氨醇骨架内,而不是 N-酰基脂肪酸侧链内。尽管已经报道了这样的荧光神经鞘氨醇类似物,但它们要么需要紫外激发,要么它们的发射与最常见的蛋白质标签,绿色荧光蛋白(GFP)的发射重叠。我们报告了一种新的荧光鞘脂类似物,硼二吡咯甲川(BODIPY)540 神经鞘氨醇的合成和用途,它的激发最大值在 540nm 处,发射使其能够与 GFP 平行可视化。哺乳动物细胞容易将 BODIPY 540 神经鞘氨醇代谢为更复杂的荧光鞘脂,随后通过天然鞘脂代谢途径降解这些荧光鞘脂。与 GFP 标记的细胞器特异性蛋白平行观察 BODIPY 540 荧光显示,BODIPY 540 神经鞘氨醇代谢物通过分泌途径运输,并在溶酶体、线粒体和核内短暂定位。该方法报告了使用 BODIPY 540 神经鞘氨醇与活细胞内 GFP 标记的蛋白质平行可视化鞘脂的方法,可能为鞘脂运输、代谢和信号转导提供新的见解。