Membrane contact sites (MCSs) are hubs allowing various cell organelles to coordinate their activities. The dynamic nature of these sites and their small size hinder analysis by current imaging techniques. To overcome these limitations, we here design a series of reversible chemogenetic reporters incorporating improved, low-affinity variants of splitFAST, and study the dynamics of different MCSs at high spatiotemporal resolution, both in vitro and in vivo. We demonstrate that these versatile reporters suit different experimental setups well, allowing one to address challenging biological questions. Using these probes, we identify a pathway in which calcium (Ca(2+)) signalling dynamically regulates endoplasmic reticulum-mitochondria juxtaposition, characterizing the underlying mechanism. Finally, by integrating Ca(2+)-sensing capabilities into the splitFAST technology, we introduce PRINCESS (PRobe for INterorganelle Ca(2+)-Exchange Sites based on SplitFAST), a class of reporters to simultaneously detect MCSs and measure the associated Ca(2+) dynamics using a single biosensor.
Simultaneous detection of membrane contact dynamics and associated Ca(2+) signals by reversible chemogenetic reporters.
利用可逆化学遗传报告分子同时检测膜接触动力学和相关的Ca(2+)信号
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作者:GarcÃa Casas Paloma, Rossini Michela, PÃ¥vénius Linnea, Saeed Mezida, Arnst Nikita, Sonda Sonia, Fernandes Tânia, D'Arsiè Irene, Bruzzone Matteo, Berno Valeria, Raimondi Andrea, Sassano Maria Livia, Naia Luana, Barbieri Elisa, Sigismund Sara, Agostinis Patrizia, Sturlese Mattia, Niemeyer Barbara A, Brismar Hjalmar, Ankarcrona Maria, Gautier Arnaud, Pizzo Paola, Filadi Riccardo
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2024 | 起止号: | 2024 Nov 12; 15(1):9775 |
| doi: | 10.1038/s41467-024-52985-0 | 研究方向: | 信号转导 |
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