Malonyl-CoA is the essential building block of fatty acids and regulates cell function through protein malonylation and allosteric regulation of signaling networks. Accordingly, the production and use of malonyl-CoA is finely tuned by the cellular energy status. Most studies of malonyl-CoA dynamics rely on bulk approaches that take only a snapshot of the average metabolic state of a population of cells, missing out on heterogeneous differences in malonyl-CoA and fatty acid biosynthesis that could be occurring among a cell population. To overcome this limitation, we have developed a genetically encoded fluorescent protein-based biosensor for malonyl-CoA that can be used to capture malonyl-CoA dynamics in single cells. This biosensor, termed Malibu (malonyl-CoA intracellular biosensor to understand dynamics), exhibits an excitation-ratiometric change in response to malonyl-CoA binding. We first used Malibu to monitor malonyl-CoA dynamics during inhibition of fatty acid biosynthesis using cerulenin in Escherichia coli, observing an increase in Malibu response in a time- and dose-dependent manner. In HeLa cells, we used Malibu to monitor the impact of fatty acid biosynthesis inhibition on malonyl-CoA dynamics in single cells, finding that two inhibitors of fatty acid biosynthesis, cerulenin and orlistat, which inhibit different steps of fatty acid biosynthesis, increase malonyl-CoA levels. Altogether, we have developed a new genetically encoded biosensor for malonyl-CoA, which can be used to study malonyl-CoA dynamics in single cells, providing an unparalleled view into fatty acid biosynthesis.
A Genetically Encoded Fluorescent Biosensor for Intracellular Measurement of Malonyl-CoA.
一种用于细胞内丙二酰辅酶A测量的基因编码荧光生物传感器
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作者:Ranzau Brodie L, Robinson Tiffany D, Scully Jack M, Kapelczak Edmund D, Dean Teagan S, TeSlaa Tara, Schmitt Danielle L
| 期刊: | ACS Bio & Med Chem Au | 影响因子: | 4.300 |
| 时间: | 2025 | 起止号: | 2024 Dec 18; 5(1):184-193 |
| doi: | 10.1021/acsbiomedchemau.4c00103 | 研究方向: | 细胞生物学 |
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