KRAP tethers IP<sub>3</sub> receptors to actin and licenses them to evoke cytosolic Ca<sup>2+</sup> signals.

Thillaiappan, Nagendra Babu; Smith, Holly A; Atakpa-Adaji, Peace; Taylor, Colin W · Nat Commun · 2021

basic_science · Level V

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Abstract

Regulation of IP<sub>3</sub> receptors (IP<sub>3</sub>Rs) by IP<sub>3</sub> and Ca<sup>2+</sup> allows regenerative Ca<sup>2+</sup> signals, the smallest being Ca<sup>2+</sup> puffs, which arise from coordinated openings of a few clustered IP<sub>3</sub>Rs. Cells express thousands of mostly mobile IP<sub>3</sub>Rs, yet Ca<sup>2+</sup> puffs occur at a few immobile IP<sub>3</sub>R clusters. By imaging cells with endogenous IP<sub>3</sub>Rs tagged with EGFP, we show that KRas-induced actin-interacting protein (KRAP) tethers IP<sub>3</sub>Rs to actin beneath the plasma membrane. Loss of KRAP abolishes Ca<sup>2+</sup> puffs and the global increases in cytosolic Ca<sup>2+</sup> concentration evoked by more intense stimulation. Over-expressing KRAP immobilizes additional IP<sub>3</sub>R clusters and results in more Ca<sup>2+</sup> puffs and larger global Ca<sup>2+</sup> signals. Endogenous KRAP determines which IP<sub>3</sub>Rs will respond: it tethers IP<sub>3</sub>R clusters to actin alongside sites where store-operated Ca<sup>2+</sup> entry occurs, licenses IP<sub>3</sub>Rs to evoke Ca<sup>2+</sup> puffs and global cytosolic Ca<sup>2+</sup> signals, implicates the actin cytoskeleton in IP<sub>3</sub>R regulation and may allow local activation of Ca<sup>2+</sup> entry.

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