Biochim Biophys Acta Mol Cell Res. 2026 Aug 03. pii: S0167-4889(26)00101-1. [Epub ahead of print]
120202
TAK-243, an inhibitor of the ubiquitin-activating enzyme UBA1, impairs the ubiquitination of proteins. We investigated its effects on the intracellular Ca2+ dynamics of human prostate cancer cells DU-145. Live-cell Ca2+ imaging with Fura2 showed that DU-145 cells exhibited spontaneous Ca2+ transients that were largely independent of the activity of the Na+/Ca2+ exchanger but were abolished by extracellular Ca2+ removal, La3+, Gd3+, BTP2 (Orai channel blocker), and thapsigargin (which depletes endoplasmic reticulum -ER- Ca2+ stores). They were also sensitive to U73122 (a phospholipase C inhibitor) and dantrolene (a ryanodine receptor blocker), suggesting the contribution of both store-operated Ca2+ channels and intracellular Ca2+ release pathways in the generation and maintenance of these Ca2+ spikes. At 0.2 μM, TAK-243 augmented the cytosolic concentration of Ca2+ ([Ca2+]i), boosted the Ca2+ spiking activity, whereas at 10 μM it caused a constitutive Ca2+ entry through BTP2-sensitive Ca2+ channels, which further augmented [Ca2+]i but reduced the number of spontaneously active cells. Experiments conducted with the genetically encoded Ca2+ dye CEPIA1er showed that TAK-243 did not empty the ER Ca2+ stores. Moreover, Förster resonance energy transfer (FRET) experiments on HEK-293 cells transfected with Orai1-CFP and STIM1-YFP indicated that it caused the relocalization of STIM1 and its coupling with Orai1. TAK-243 also increased the membrane potential and the Ca2+ buffering capacities of mitochondria. Taken together, treating DU-145 cells with TAK-243 to prevent the ubiquitination of proteins activates the entry of Ca2+ through store-operated Ca2+ channels independently of the ER Ca2+ stores and alters mitochondrial functions.
Keywords: Calcium imaging; Calcium intracellular release; Calcium release-activated calcium channel protein 1 (ORAI1); Calcium transport; Prostate cancer; Ubiquitination