Real-Time NMR Recording of Fermentation and Lipid Metabolism Processes in Live Microalgae Cells.
Faezeh NamiMaria Joao FerrazThomas BakkumJohannes M F G AertsAnjali PanditPublished in: Angewandte Chemie (International ed. in English) (2022)
Non-invasive and real-time recording of processes in living cells has been limited to detection of small cellular components such as soluble proteins and metabolites. Here we report a multiphase NMR approach using magic-angle spinning NMR to synchronously follow microbial processes of fermentation, lipid metabolism and structural dynamic changes in live microalgae cells. Chlamydomonas reinhardtii green algae were highly concentrated, introducing dark fermentation and anoxia conditions. Single-pulse NMR experiments were applied to obtain temperature-dependent kinetic profiles of the formed fermentation products. Through dynamics-based spectral editing NMR, simultaneous conversion of galactolipids into TAG and free fatty acids was observed and rapid loss of rigid lipid structures. This suggests that lipolysis under dark and anoxia conditions finally results in the breakdown of cell and organelle membranes, which could be beneficial for recovery of intracellular microbial useful products.
Keyphrases
- solid state
- high resolution
- magnetic resonance
- fatty acid
- living cells
- induced apoptosis
- saccharomyces cerevisiae
- lactic acid
- cell cycle arrest
- microbial community
- adipose tissue
- fluorescent probe
- blood pressure
- crispr cas
- optical coherence tomography
- loop mediated isothermal amplification
- stem cells
- magnetic resonance imaging
- endoplasmic reticulum stress
- mass spectrometry
- ms ms
- single molecule
- cell proliferation
- bone marrow
- reactive oxygen species
- label free
- quantum dots