Rat cerebellar granule cells were cultured for 5 days with progesterone, resulting in the conversion of progesterone to allopregnanolone, a potent and efficacious modulator of ?-aminobutyric acid (GABA) type-A receptors, as well as in decreases in the abundance of GABA(A)-receptor ?1, ?3, ?5, and ?2 subunit mRNAs. These effects were accompanied by decreases in the efficacies of diazepam and the ?-carboline DMCM with regard to modulation of GABA-evoked CI- currents. Withdrawal from such progesterone treatment resulted in a rapid and selective increase in the abundance of the GABA(A) ?4 subunit mRNA that was associated with a restoration of receptor sensitivity to the negative modulatory action of DMCM, a positive receptor response to flumazenil, and continued reduced responsiveness of receptors to diazepam. Prevention of allopregnanolone synthesis by the 5?-reductase inhibitor finasteride also prevented the changes in both GABAA receptor gene expression and receptor function elicited by progesterone treatment and withdrawal.

Allopregnanolone synthesis in cerebellar granule cells: Roles in regulation of GABA(A) receptor expression and function during progesterone treatment and withdrawal

Ma;Pisu;
2000

Abstract

Rat cerebellar granule cells were cultured for 5 days with progesterone, resulting in the conversion of progesterone to allopregnanolone, a potent and efficacious modulator of ?-aminobutyric acid (GABA) type-A receptors, as well as in decreases in the abundance of GABA(A)-receptor ?1, ?3, ?5, and ?2 subunit mRNAs. These effects were accompanied by decreases in the efficacies of diazepam and the ?-carboline DMCM with regard to modulation of GABA-evoked CI- currents. Withdrawal from such progesterone treatment resulted in a rapid and selective increase in the abundance of the GABA(A) ?4 subunit mRNA that was associated with a restoration of receptor sensitivity to the negative modulatory action of DMCM, a positive receptor response to flumazenil, and continued reduced responsiveness of receptors to diazepam. Prevention of allopregnanolone synthesis by the 5?-reductase inhibitor finasteride also prevented the changes in both GABAA receptor gene expression and receptor function elicited by progesterone treatment and withdrawal.
2000
3alpha hydroxy 5alpha pregnan 20 one
4 aminobutyric acid A receptor
beta carboline derivative
diazepam
flumazenil
progesterone
animal cell
article
cerebellum
chloride current
gene expression
granule cell
hormone metabolism
hormone release
hormone synthesis
nonhuman
priority journal
rat
receptor intrinsic activity
Animals
Cells
Cultured
Cerebellum
Electrophysiology
Gene Expression Regulation
Pregnanolone
Progesterone
Rats
Receptors
GABA-A
Xenopus laevis
File in questo prodotto:
Non ci sono file associati a questo prodotto.

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/198725
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 122
  • ???jsp.display-item.citation.isi??? ND
social impact