CCL

Összesen 1 találat.
#/oldal:
Részletezés:
Rendezés:

1.

001-es BibID:BIBFORM095956
035-os BibID:(Scopus)85113278549 (cikkazonosító)101015 (WOS)000706408900003 (PubMed)34329682
Első szerző:Diszházi Gyula (gyógyszerész)
Cím:TRPM4 links calcium signaling to membrane potential in pancreatic acinar cells / Gyula Diszházi, Zsuzsanna É. Magyar, Erika Lisztes, Edit Tóth-Molnár, Péter P. Nánási, Rudi Vennekens, Balázs I. Tóth, János Almássy
Dátum:2021
ISSN:0021-9258 1083-351X
Megjegyzések:TRPM4 is a Ca2+-activated nonselective cation channel that mediates membrane depolarization. Although, a current with the hallmarks of a TRPM4-mediated current has been previously reported in pancreatic acinar cells (PAC), the role of TRPM4 in the regulation of acinar cell function has not yet been explored. In the present study, we identify this TRPM4 current and describe its role in context of Ca2+ signaling of PACs using pharmacological tools and TRPM4-deficient mice. We found a significant Ca2+-activated cation current in PACs that was sensitive to the TRPM4 inhibitors 9-phenanthrol and CBA (4-Chloro-2-[[2-(2-chlorophenoxy)acetyl]amino]benzoic acid). We demonstrated that the CBA-sensitive current was responsible for a Ca2+-dependent depolarization of PACs from a resting membrane potential of -44.4 ? 2.9 to -27.7 ? 3 mV. Furthermore, we showed that Ca2+ influx was higher in the TRPM4 KO- and CBA-treated PACs than in control cells. As hormone induced repetitive Ca2+ transients partially rely on Ca2+ influx in PACs, the role of TRPM4 was also assessed on Ca2+ oscillations elicited by physiologically relevant concentrations of the cholecystokinin analogue cerulein. These data show that the amplitude of Ca2+ signals were significantly higher in TRPM4 KO than in control PACs. Our results suggest that PACs are depolarized by TRPM4 currents to an extent that results in a significant reduction of the inward driving force for Ca2+. In conclusion, TRPM4 links intracellular Ca2+ signaling to membrane potential as a negative feedback regulator of Ca2+ entry in PACs.
Tárgyszavak:Orvostudományok Elméleti orvostudományok idegen nyelvű folyóiratközlemény külföldi lapban
folyóiratcikk
pancreatic acinar cells
calcium signaling
ion channels
Megjelenés:Journal of Biological Chemistry. - 297 : 3 (2021), p. 101015. -
További szerzők:Magyar Zsuzsanna Édua (1993-) (molekuláris biológus) Lisztes Erika (1986-) (élettanász) Tóth-Molnár Edit Nánási Péter Pál (1956-) (élettanász) Vennekens, Rudi Tóth István Balázs (1978-) (élettanász) Almássy János (1981-) (élettanász, biológus, angol-magyar szakfordító)
Pályázati támogatás:FK_135130
OTKA
FK_134725
OTKA
GINOP-2.3.2-15-2016-00040
GINOP
Internet cím:Szerző által megadott URL
DOI
Intézményi repozitóriumban (DEA) tárolt változat
Borító:
Rekordok letöltése1