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Novel functional properties of Ca 2+ channel β subunits revealed by their expression in adult rat heart cells
Author(s) -
Colecraft Henry M.,
Alseikhan Badr,
Takahashi Shoji X.,
Chaudhuri Dipayan,
Mittman Scott,
Yegnasubramanian Vasan,
Alvania Rebecca S.,
Johns David C.,
Marbán Eduardo,
Yue David T.
Publication year - 2002
Publication title -
the journal of physiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.802
H-Index - 240
eISSN - 1469-7793
pISSN - 0022-3751
DOI - 10.1113/jphysiol.2002.018515
Subject(s) - beta (programming language) , protein subunit , gating , biophysics , microbiology and biotechnology , chemistry , biology , biochemistry , gene , computer science , programming language
Recombinant adenoviruses were used to overexpress green fluorescent protein (GFP)‐fused auxiliary Ca 2+ channel β subunits (β 1 ‐β 4 ) in cultured adult rat heart cells, to explore new dimensions of β subunit functions in vivo. Distinct β‐GFP subunits distributed differentially between the surface sarcolemma, transverse elements, and nucleus in single heart cells. All β‐GFP subunits increased the native cardiac whole‐cell L‐type Ca 2+ channel current density, but produced distinctive effects on channel inactivation kinetics. The degree of enhancement of whole‐cell current density was non‐uniform between β subunits, with a rank order of potency β 2a αβ 4 > β 1b > β 3 . For each β subunit, the increase in L‐type current density was accompanied by a correlative increase in the maximal gating charge ( Q max ) moved with depolarization. However, β subunits produced characteristic effects on single L‐type channel gating, resulting in divergent effects on channel open probability ( P o ). Quantitative analysis and modelling of single‐channel data provided a kinetic signature for each channel type. Spurred on by ambiguities regarding the molecular identity of the actual endogenous cardiac L‐type channel β subunit, we cloned a new rat β 2 splice variant, β 2b , from heart using 5′ rapid amplification of cDNA ends (RACE) PCR. By contrast with β 2a , expression of β 2b in heart cells yielded channels with a microscopic gating signature virtually identical to that of native unmodified channels. Our results provide novel insights into β subunit functions that are unattainable in traditional heterologous expression studies, and also provide new perspectives on the molecular identity of the β subunit component of cardiac L‐type Ca 2+ channels. Overall, the work establishes a powerful experimental paradigm to explore novel functions of ion channel subunits in their native environments.

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