Piezo mechanosensory channels regulate centrosome integrity and mitotic entry.

David, Liron; Martinez, Laurel; Xi, Qiongchao; Kooshesh, Kameron A; Zhang, Ying; Shah, Jagesh V; Maas, Richard L; Wu, Hao · Proc Natl Acad Sci U S A · 2023

basic_science · Level V

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Abstract

Piezo1 and 2 are evolutionarily conserved mechanosensory cation channels known to function on the cell surface by responding to external pressure and transducing a mechanically activated Ca<sup>2+</sup> current. Here we show that both Piezo1 and 2 also exhibit concentrated intracellular localization at centrosomes. Both Piezo1 and 2 loss-of-function and Piezo1 activation by the small molecule Yoda1 result in supernumerary centrosomes, premature centriole disengagement, multi-polar spindles, and mitotic delay. By using a GFP, Calmodulin and M13 Protein fusion (GCaMP) Ca<sup>2+</sup>-sensitive reporter, we show that perturbations in Piezo modulate Ca<sup>2+</sup> flux at centrosomes. Moreover, the inhibition of Polo-like-kinase 1 eliminates Yoda1-induced centriole disengagement. Because previous studies have implicated force generation by microtubules as essential for maintaining centrosomal integrity, we propose that mechanotransduction by Piezo maintains pericentrosomal Ca<sup>2+</sup> within a defined range, possibly through sensing cell intrinsic forces from microtubules.

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