AbstractHigh voltage-activated Ca2+ channel expression and gating is controlled by their β subunits. Although the sites of interaction are known at the atomic level, how β modulates gating remains to be determined. Using a chimeric approach, β subunit regulation was conferred to a low voltage-activated channel. Regulation was dependent on a rigid linker connecting the α1 interaction domain to IS6. Chimeric channels also revealed a role for IS6 in channel gating. Taken together, these results support a direct coupling model where β subunits alter movements in IS6 that occur as the channel transits between closed, open, and inactivated states
International audienceThe voltage-gated calcium channels (CaVs or VGCCs) are fundamental regulators ...
The eight members of the calcium channel gamma subunit family are integral membrane proteins that re...
High conductance, calcium- and voltage-activated potassium (BK, MaxiK) channels are widely expressed...
interaction site has been mapped by crystallographic studies. Nevertheless, how this interaction le...
The β subunit is a cytoplasmic component that normal-izes the current amplitude, kinetics, and volta...
AbstractThe β-subunit of voltage-gated Ca2+ channels plays a dual role in chaperoning the channels t...
BACKGROUND: The Ca(v)beta subunits of high voltage-activated Ca(2+) channels control the trafficking...
AbstractThe molecular mechanisms of how α1 and β subunits of voltage-gated Ca2+ channels interact wi...
AbstractIn voltage-dependent Ca2+ channels, the α1 and β subunits interact via two cytoplasmic regio...
Abstract CaVβ subunits of voltage-gated calcium channels contain two conserved domains, a src-homolo...
AbstractCa2+ channel auxiliary β subunits have been shown to modulate voltage-dependent inactivation...
Abstractβ-Subunits of voltage-dependent Ca2+ channels regulate both their expression and biophysical...
AbstractVoltage gated Ca2+ channel (VGCC) auxiliary β subunits increase membrane expression of the m...
AbstractThe class A Ca2+ channel αl subunit (αlA) was expressed in Xenopus oocytes alone or in combi...
Two processes dominate voltage-gated calcium channel (Ca(V)) inactivation: voltage-dependent inactiv...
International audienceThe voltage-gated calcium channels (CaVs or VGCCs) are fundamental regulators ...
The eight members of the calcium channel gamma subunit family are integral membrane proteins that re...
High conductance, calcium- and voltage-activated potassium (BK, MaxiK) channels are widely expressed...
interaction site has been mapped by crystallographic studies. Nevertheless, how this interaction le...
The β subunit is a cytoplasmic component that normal-izes the current amplitude, kinetics, and volta...
AbstractThe β-subunit of voltage-gated Ca2+ channels plays a dual role in chaperoning the channels t...
BACKGROUND: The Ca(v)beta subunits of high voltage-activated Ca(2+) channels control the trafficking...
AbstractThe molecular mechanisms of how α1 and β subunits of voltage-gated Ca2+ channels interact wi...
AbstractIn voltage-dependent Ca2+ channels, the α1 and β subunits interact via two cytoplasmic regio...
Abstract CaVβ subunits of voltage-gated calcium channels contain two conserved domains, a src-homolo...
AbstractCa2+ channel auxiliary β subunits have been shown to modulate voltage-dependent inactivation...
Abstractβ-Subunits of voltage-dependent Ca2+ channels regulate both their expression and biophysical...
AbstractVoltage gated Ca2+ channel (VGCC) auxiliary β subunits increase membrane expression of the m...
AbstractThe class A Ca2+ channel αl subunit (αlA) was expressed in Xenopus oocytes alone or in combi...
Two processes dominate voltage-gated calcium channel (Ca(V)) inactivation: voltage-dependent inactiv...
International audienceThe voltage-gated calcium channels (CaVs or VGCCs) are fundamental regulators ...
The eight members of the calcium channel gamma subunit family are integral membrane proteins that re...
High conductance, calcium- and voltage-activated potassium (BK, MaxiK) channels are widely expressed...