G protein modulation of recombinant P/Q-type calcium channels by regulators of G protein signalling proteins

Citation
Md. Mark et al., G protein modulation of recombinant P/Q-type calcium channels by regulators of G protein signalling proteins, J PHYSL LON, 528(1), 2000, pp. 65-77
Citations number
53
Categorie Soggetti
Physiology
Journal title
JOURNAL OF PHYSIOLOGY-LONDON
ISSN journal
00223751 → ACNP
Volume
528
Issue
1
Year of publication
2000
Pages
65 - 77
Database
ISI
SICI code
0022-3751(20001001)528:1<65:GPMORP>2.0.ZU;2-V
Abstract
1. Fast synaptic transmission is triggered by the activation of presynaptic Ca2+ channels which can be inhibited by G beta gamma subunits via G protei n-coupled receptors (GPCR). Regulators of G protein signalling (RGS) protei ns are GTPase-accelerating proteins (GAPs), which are responsible fur >100- fold increases in the GTPase activity of G proteins and might be involved i n the regulation of presynaptic Ca2+ channels. In this study we investigate d the effects of RGS2 on G protein modulation of recombinant P/Q-type chann els expressed in a human embryonic kidney (HEK293) cell line using whole-ce ll recordings. 2. RGS2 markedly accelerates transmitter-mediated inhibition and recovery f rom inhibition of Ba2+ currents (I-Ba) through P/Q-type channels heterologo usly expressed with the muscarinic acetylcholine receptor M2 (mAChR M2). 3. Both RGS2 and RGS4 modulate the prepulse facilitation properties of P/Q- type Ca2+ channels. G protein reinhibition is accelerated, while release fr om inhibition is slowed. Those kinetics depend on the availability of G pro tein alpha and beta gamma subunits which is altered by RGS proteins. 4. RGS proteins unmask the Ca2+ channel beta subunit modulation of Ca2+ cha nnel G protein inhibition. In the presence of RGS2, P/Q-type channels conta ining the beta (2a) and beta (3) subunit; reveal significantly altered kine tics of G protein modulation and increased facilitation compared to Ca2+ ch annels coexpressed with the beta (1b) or beta (4) subunit.