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January 23, 2016SHILAP Revista de lepidopterología90 citationsOpen Access

Unnatural amino acid photo-crosslinking of the IKs channel complex demonstrates a KCNE1:KCNQ1 stoichiometry of up to 4:4

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CMChristopher I. MurrayMWMaartje WesthoffJEJodene Eldstrom

Structured PICO

P
Population
IKs fusion proteins linking KCNE1 to one (EQ), two (EQQ) or four (EQQQQ) KCNQ1 subunits
I
Intervention
UV-crosslinking unnatural amino acid in KCNE1
C
Comparator
Different stoichiometries (EQ vs EQQ vs EQQQQ) and KCNQ1 alone
O
Outcome
Channel activation, conductance, first latency of opening, and crosslinking ratessurrogate

The study demonstrates that the IKs channel complex can have a variable stoichiometry of up to 4 KCNE1 to 4 KCNQ1 subunits, resolving a controversy in cardiac electrophysiology.

Abstract

Cardiac repolarization is determined in part by the slow delayed rectifier current (IKs), through the tetrameric voltage-gated ion channel, KCNQ1, and its β-subunit, KCNE1. The stoichiometry between α and β-subunits has been controversial with studies reporting either a strict 2 KCNE1:4 KCNQ1 or a variable ratio up to 4:4. We used IKs fusion proteins linking KCNE1 to one (EQ), two (EQQ) or four (EQQQQ) KCNQ1 subunits, to reproduce compulsory 4:4, 2:4 or 1:4 stoichiometries. Whole cell and single-channel recordings showed EQQ and EQQQQ to have increasingly hyperpolarized activation, reduced conductance, and shorter first latency of opening compared to EQ - all abolished by the addition of KCNE1. As well, using a UV-crosslinking unnatural amino acid in KCNE1, we found EQQQQ and EQQ crosslinking rates to be progressively slowed compared to KCNQ1, which demonstrates that no intrinsic mechanism limits the association of up to four β-subunits within the IKs complex.

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Cite This Study

Murray et al. (2016) studied this question.

synapsesocial.com/papers/69dc1e2b8e41b05fe3955229https://doi.org/10.7554/elife.11815
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