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Mitochondria-specific photoactivation to monitor local sphingosine metabolism and function

机译:线粒体特异性光激活,以监测局部鞘氨醇的代谢和功能

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摘要

Photoactivation ('uncaging’) is a powerful approach for releasing bioactive small-molecules in living cells. Current uncaging methods are limited by the random distribution of caged molecules within cells. We have developed a mitochondria-specific photoactivation method, which permitted us to release free sphingosine inside mitochondria and thereafter monitor local sphingosine metabolism by lipidomics. Our results indicate that sphingosine was quickly phosphorylated into sphingosine 1-phosphate (S1P) driven by sphingosine kinases. In time-course studies, the mitochondria-specific uncaged sphingosine demonstrated distinct metabolic patterns compared to globally-released sphingosine, and did not induce calcium spikes. Our data provide direct evidence that sphingolipid metabolism and signaling are highly dependent on the subcellular location and opens up new possibilities to study the effects of lipid localization on signaling and metabolic fate.
机译:光激活(“解笼”)是一种在活细胞中释放生物活性小分子的有力方法。当前的开笼方法受到笼中分子在细胞内随机分布的限制。我们已经开发出一种特定的线粒体光活化方法,该方法使我们能够释放线粒体内的自由鞘氨醇,然后通过脂质组学监测局部鞘氨醇的代谢。我们的结果表明鞘氨醇被鞘氨醇激酶驱动迅速磷酸化为鞘氨醇1-磷酸(S1P)。在时程研究中,与全局释放的鞘氨醇相比,线粒体特有的未封端鞘氨醇显示出独特的代谢模式,并且不会引起钙尖峰。我们的数据提供了直接证据,鞘脂的代谢和信号传导高度依赖于亚细胞的位置,并开辟了新的可能性来研究脂质定位对信号传导和代谢命运的影响。

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