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October 12, 2012Journal of Bioresource Management29 citations

Role of the BK channel (KCa1.1) during activation of electrogenic K+ secretion in guinea pig distal colon

JZJin ZhangSHSusan HalmDHDan R. Halm

Structured PICO

P
Population
Male guinea pigs (500–700 g body wt, Hartley strain) used for isolation of colonic mucosa.
I
Intervention
Mucosal addition of KCa1.1 blockers iberiotoxin (IbTx) or paxilline.
C
Comparator
Control (untreated or baseline conditions).
O
Outcome
Inhibition of negative short-circuit current (Isc) and transepithelial conductance (Gt) associated with K+ secretion.surrogate

The BK channel (KCa1.1) in the apical membrane of guinea pig distal colon contributes significantly to electrogenic K+ secretion activated by various secretagogues.

Abstract

Secretagogues acting at a variety of receptor types activate electrogenic K(+) secretion in guinea pig distal colon, often accompanied by Cl(-) secretion. Distinct blockers of K(Ca)1.1 (BK, Kcnma1), iberiotoxin (IbTx), and paxilline inhibited the negative short-circuit current (I(sc)) associated with K(+) secretion. Mucosal addition of IbTx inhibited epinephrine-activated I(sc) ((epi)I(sc)) and transepithelial conductance ((epi)G(t)) consistent with K(+) secretion occurring via apical membrane K(Ca)1.1. The concentration dependence of IbTx inhibition of (epi)I(sc) yielded an IC(50) of 193 nM, with a maximal inhibition of 51%. Similarly, IbTx inhibited (epi)G(t) with an IC(50) of 220 nM and maximal inhibition of 48%. Mucosally added paxilline (10 μM) inhibited (epi)I(sc) and (epi)G(t) by ∼50%. IbTx and paxilline also inhibited I(sc) activated by mucosal ATP, supporting apical K(Ca)1.1 as a requirement for this K(+) secretagogue. Responses to IbTx and paxilline indicated that a component of K(+) secretion occurred during activation of Cl(-) secretion by prostaglandin-E(2) and cholinergic stimulation. Analysis of K(Ca)1.1α mRNA expression in distal colonic epithelial cells indicated the presence of the ZERO splice variant and three splice variants for the COOH terminus. The presence of the regulatory β-subunits K(Ca)β1 and K(Ca)β4 also was demonstrated. Immunolocalization supported the presence of K(Ca)1.1α in apical and basolateral membranes of surface and crypt cells. Together these results support a cellular mechanism for electrogenic K(+) secretion involving apical membrane K(Ca)1.1 during activation by several secretagogue types, but the observed K(+) secretion likely required the activity of additional K(+) channel types in the apical membrane.

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Cite This Study

Zhang et al. (2012) studied this question.

synapsesocial.com/papers/6a71f52c75498292b70b3fdchttps://doi.org/10.1152/ajpgi.00325.2012
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