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Merck

MERLIN: a novel BRET-based proximity biosensor for studying mitochondria-ER contact sites.

Life science alliance (2019-12-11)
Vanessa Hertlein, Hector Flores-Romero, Kushal K Das, Sebastian Fischer, Michael Heunemann, Maria Calleja-Felipe, Shira Knafo, Katharina Hipp, Klaus Harter, Julia C Fitzgerald, Ana J García-Sáez
RÉSUMÉ

The contacts between the ER and mitochondria play a key role in cellular functions such as the exchange of lipids and calcium between both organelles, as well as in apoptosis and autophagy signaling. The molecular architecture and spatiotemporal regulation of these distinct contact regions remain obscure and there is a need for new tools that enable tackling these questions. Here, we present a new bioluminescence resonance energy transfer-based biosensor for the quantitative analysis of distances between the ER and mitochondria that we call MERLIN (Mitochondria-ER Length Indicator Nanosensor). The main advantages of MERLIN compared with available alternatives are that it does not rely on the formation of artificial physical links between the two organelles, which could lead to artifacts, and that it allows to study contact site reversibility and dynamics. We show the applicability of MERLIN by characterizing the role of the mitochondrial dynamics machinery on the contacts of this organelle with the ER.

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Sigma-Aldrich
DAPT, ≥98% (HPLC), solid
Sigma-Aldrich
Anticorps monoclonal anti-β-actine antibody produced in mouse, clone AC-74, purified immunoglobulin, buffered aqueous solution
Sigma-Aldrich
Purmorphamine, ≥98% (HPLC)
Millipore
Immobilon®-PSQ PVDF Membrane, 50 sheets, 7 cm x 8.4 cm, 0.2 µm pore size, Hydrophobic PVDF Transfer Membrane for western blotting.