Harnessing Clickable Acylated Glycerol Probes as Chemical Tools for Tracking Glycerolipid Metabolism.
Christelle F AncajasAdam J CarrJinchao LouRuhani SagarYue ZhouTodd B ReynoldsMichael D BestPublished in: Chemistry (Weinheim an der Bergstrasse, Germany) (2023)
We report the use of clickable monoacylglycerol (MAG) analogs as probes for the labeling of glycerolipids during lipid metabolism. Incorporation of azide tags onto the glycerol region was pursued to develop probes that would label glycerolipids, in which the click tag would not be removed through processes including acyl chain and headgroup remodeling. Analysis of clickable MAG probes containing acyl chains of different length resulted in widely variable cell imaging and cytotoxicity profiles. Based on these results, we focused on a probe bearing a short acyl chain (C 4 -MAG-N 3 ) that was found to infiltrate natural lipid biosynthetic pathways to produce click-tagged versions of both neutral and phospholipid products. Alternatively, strategic blocking of the glycerol sn-3 position in probe C 4 -MEG-N 3 served to deactivate phospholipid tagging and focus labeling on neutral lipids. This work shows that lipid metabolic labeling profiles can be tuned based on probe structures and provides valuable tools for evaluating alterations to lipid metabolism in cells.
Keyphrases
- fatty acid
- living cells
- fluorescent probe
- single molecule
- small molecule
- fluorescence imaging
- high resolution
- induced apoptosis
- quantum dots
- single cell
- stem cells
- photodynamic therapy
- signaling pathway
- mesenchymal stem cells
- resting state
- molecular docking
- big data
- functional connectivity
- endoplasmic reticulum stress
- artificial intelligence
- pi k akt