Literature DB >> 12524280

Molecular basis for Kir6.2 channel inhibition by adenine nucleotides.

Bernard Ribalet1, Scott A John, James N Weiss.   

Abstract

K(ATP) channels are comprised of a pore-forming protein, Kir6.x, and the sulfonylurea receptor, SURx. Interaction of adenine nucleotides with Kir6.2 positively charged amino acids such as K185 and R201 on the C-terminus causes channel closure. Substitution of these amino acids with other positively charged residues had small effects on inhibition by adenine nucleotide, while substitution with neutral or negative residues had major effects, suggesting electrostatic interactions between Kir6.2 positive charges and adenine nucleotide negative phosphate groups. Furthermore, R201 mutation decreased channel sensitivity to ATP, ADP, and AMP to a similar extent, but K185 mutation decreased primarily ATP and ADP sensitivity, leaving the AMP sensitivity relatively unaffected. Thus, channel inhibition by ATP may involve interaction of the alpha-phosphate with R201 and interaction of the beta-phosphate with K185. In addition, decreased open probability due to rundown or sulfonylureas caused an increase in ATP sensitivity in the K185 mutant, but not in the R201 mutant. Thus, the beta-phosphate may bind in a state-independent fashion to K185 to destabilize channel openings, while R201 interacts with the alpha-phosphate to stabilize a channel closed configuration. Substitution of R192 on the C-terminus and R50 on the N-terminus with different charged residues also affected ATP sensitivity. Based on these results a structural scheme is proposed, which includes features of other recently published models.

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Year:  2003        PMID: 12524280      PMCID: PMC1302608          DOI: 10.1016/S0006-3495(03)74847-4

Source DB:  PubMed          Journal:  Biophys J        ISSN: 0006-3495            Impact factor:   4.033


  16 in total

1.  The kinetic and physical basis of K(ATP) channel gating: toward a unified molecular understanding.

Authors:  D Enkvetchakul; G Loussouarn; E Makhina; S L Shyng; C G Nichols
Journal:  Biophys J       Date:  2000-05       Impact factor: 4.033

2.  The role of lysine 185 in the kir6.2 subunit of the ATP-sensitive channel in channel inhibition by ATP.

Authors:  F Reimann; T J Ryder; S J Tucker; F M Ashcroft
Journal:  J Physiol       Date:  1999-11-01       Impact factor: 5.182

3.  Crystal structure and mechanism of a calcium-gated potassium channel.

Authors:  Youxing Jiang; Alice Lee; Jiayun Chen; Martine Cadene; Brian T Chait; Roderick MacKinnon
Journal:  Nature       Date:  2002-05-30       Impact factor: 49.962

4.  Truncation of Kir6.2 produces ATP-sensitive K+ channels in the absence of the sulphonylurea receptor.

Authors:  S J Tucker; F M Gribble; C Zhao; S Trapp; F M Ashcroft
Journal:  Nature       Date:  1997-05-08       Impact factor: 49.962

5.  A new technique for the assay of infectivity of human adenovirus 5 DNA.

Authors:  F L Graham; A J van der Eb
Journal:  Virology       Date:  1973-04       Impact factor: 3.616

6.  Phosphoinositides decrease ATP sensitivity of the cardiac ATP-sensitive K(+) channel. A molecular probe for the mechanism of ATP-sensitive inhibition.

Authors:  Z Fan; J C Makielski
Journal:  J Gen Physiol       Date:  1999-08       Impact factor: 4.086

7.  Regulation of cloned ATP-sensitive K channels by phosphorylation, MgADP, and phosphatidylinositol bisphosphate (PIP(2)): a study of channel rundown and reactivation.

Authors:  B Ribalet; S A John; J N Weiss
Journal:  J Gen Physiol       Date:  2000-09       Impact factor: 4.086

8.  Regulation of cloned ATP-sensitive K channels by adenine nucleotides and sulfonylureas: interactions between SUR1 and positively charged domains on Kir6.2.

Authors:  S A John; J N Weiss; B Ribalet
Journal:  J Gen Physiol       Date:  2001-10       Impact factor: 4.086

9.  Structural determinants of PIP(2) regulation of inward rectifier K(ATP) channels.

Authors:  S L Shyng; C A Cukras; J Harwood; C G Nichols
Journal:  J Gen Physiol       Date:  2000-11       Impact factor: 4.086

10.  Structural and functional determinants of conserved lipid interaction domains of inward rectifying Kir6.2 channels.

Authors:  Catherine A Cukras; Iana Jeliazkova; Colin G Nichols
Journal:  J Gen Physiol       Date:  2002-06       Impact factor: 4.086

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  16 in total

1.  Concerted gating mechanism underlying KATP channel inhibition by ATP.

Authors:  Peter Drain; Xuehui Geng; Lehong Li
Journal:  Biophys J       Date:  2004-04       Impact factor: 4.033

Review 2.  Muscle KATP channels: recent insights to energy sensing and myoprotection.

Authors:  Thomas P Flagg; Decha Enkvetchakul; Joseph C Koster; Colin G Nichols
Journal:  Physiol Rev       Date:  2010-07       Impact factor: 37.312

Review 3.  KATP Channels in the Cardiovascular System.

Authors:  Monique N Foster; William A Coetzee
Journal:  Physiol Rev       Date:  2016-01       Impact factor: 37.312

4.  Functional analysis of a structural model of the ATP-binding site of the KATP channel Kir6.2 subunit.

Authors:  Jennifer F Antcliff; Shozeb Haider; Peter Proks; Mark S P Sansom; Frances M Ashcroft
Journal:  EMBO J       Date:  2005-01-13       Impact factor: 11.598

5.  ATP-sensitive K+ channels: regulation of bursting by the sulphonylurea receptor, PIP2 and regions of Kir6.2.

Authors:  Bernard Ribalet; Scott A John; Lai-Hua Xie; James N Weiss
Journal:  J Physiol       Date:  2005-12-22       Impact factor: 5.182

6.  Functional mapping of the N-terminal arginine cluster and C-terminal acidic residues of Kir6.2 channel fused to a G protein-coupled receptor.

Authors:  Maria A Principalli; Laura Lemel; Anaëlle Rongier; Anne-Claire Godet; Karla Langer; Jean Revilloud; Leonardo Darré; Carmen Domene; Michel Vivaudou; Christophe J Moreau
Journal:  Biochim Biophys Acta Biomembr       Date:  2017-07-28       Impact factor: 3.747

7.  Novel nucleotide-binding sites in ATP-sensitive potassium channels formed at gating interfaces.

Authors:  Ke Dong; Lie-Qi Tang; Gordon G MacGregor; Qiang Leng; Steven C Hebert
Journal:  EMBO J       Date:  2005-03-17       Impact factor: 11.598

8.  Molecular mechanism for ATP-dependent closure of the K+ channel Kir6.2.

Authors:  Scott A John; James N Weiss; Lai-Hua Xie; Bernard Ribalet
Journal:  J Physiol       Date:  2003-07-14       Impact factor: 5.182

9.  Impact of disease-causing SUR1 mutations on the KATP channel subunit interface probed with a rhodamine protection assay.

Authors:  Eric Hosy; Julien P Dupuis; Michel Vivaudou
Journal:  J Biol Chem       Date:  2009-11-20       Impact factor: 5.157

10.  Long-chain acyl-CoA esters and phosphatidylinositol phosphates modulate ATP inhibition of KATP channels by the same mechanism.

Authors:  Dirk Schulze; Markus Rapedius; Tobias Krauter; Thomas Baukrowitz
Journal:  J Physiol       Date:  2003-10-15       Impact factor: 5.182

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