Capture at the ER-mitochondrial contacts licenses IP<sub>3</sub> receptors to stimulate local Ca<sup>2+</sup> transfer and oxidative metabolism.

Katona, Máté; Bartók, Ádám; Nichtova, Zuzana; Csordás, György; Berezhnaya, Elena; Weaver, David; Ghosh, Arijita; Várnai, Péter et al. · Nat Commun · 2022

basic_science · Level V

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Abstract

Endoplasmic reticulum-mitochondria contacts (ERMCs) are restructured in response to changes in cell state. While this restructuring has been implicated as a cause or consequence of pathology in numerous systems, the underlying molecular dynamics are poorly understood. Here, we show means to visualize the capture of motile IP<sub>3</sub> receptors (IP3Rs) at ERMCs and document the immediate consequences for calcium signaling and metabolism. IP3Rs are of particular interest because their presence provides a scaffold for ERMCs that mediate local calcium signaling, and their function outside of ERMCs depends on their motility. Unexpectedly, in a cell model with little ERMC Ca<sup>2+</sup> coupling, IP3Rs captured at mitochondria promptly mediate Ca<sup>2+</sup> transfer, stimulating mitochondrial oxidative metabolism. The Ca<sup>2+</sup> transfer does not require linkage with a pore-forming protein in the outer mitochondrial membrane. Thus, motile IP3Rs can traffic in and out of ERMCs, and, when 'parked', mediate calcium signal propagation to the mitochondria, creating a dynamic arrangement that supports local communication.

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