Literature DB >> 11278532

Direct activation of cloned K(atp) channels by intracellular acidosis.

H Xu1, N Cui, Z Yang, J Wu, L R Giwa, L Abdulkadir, P Sharma, C Jiang.   

Abstract

ATP-sensitive K(+) (K(ATP)) channels may be regulated by protons in addition to ATP, phospholipids, and other nucleotides. Such regulation allows a control of cellular excitability in conditions when pH is low but ATP concentration is normal. However, whether the K(ATP) changes its activity with pH alterations remains uncertain. In this study we showed that the reconstituted K(ATP) was strongly activated during hypercapnia and intracellular acidosis using whole-cell recordings. Further characterizations in excised patches indicated that channel activity increased with a moderate drop in intracellular pH and decreased with strong acidification. The channel activation was produced by a direct action of protons on the Kir6 subunit and relied on a histidine residue that is conserved in all K(ATP). The inhibition appeared to be a result of channel rundown and was not seen in whole-cell recordings. The biphasic response may explain the contradictory pH sensitivity observed in cell-endogenous K(ATP) in excised patches. Site-specific mutations of two residues showed that pH and ATP sensitivities were independent of each other. Thus, these results demonstrate that the proton is a potent activator of the K(ATP). The pH-dependent activation may enable the K(ATP) to control vascular tones, insulin secretion, and neuronal excitability in several pathophysiologic conditions.

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Year:  2001        PMID: 11278532     DOI: 10.1074/jbc.M009631200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  20 in total

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3.  Evidence from high-altitude acclimatization for an integrated cerebrovascular and ventilatory hypercapnic response but different responses to hypoxia.

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Review 5.  The divergence, actions, roles, and relatives of sodium-coupled bicarbonate transporters.

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8.  Determinant role of membrane helices in K ATP channel gating.

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Review 9.  K(ATP) channel action in vascular tone regulation: from genetics to diseases.

Authors:  Wei-Wei Shi; Yang Yang; Yun Shi; Chun Jiang
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10.  Allosteric modulation of the mouse Kir6.2 channel by intracellular H+ and ATP.

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Journal:  J Physiol       Date:  2002-09-01       Impact factor: 5.182

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