Literature DB >> 14754884

Role of the NH2 terminus in the assembly and trafficking of the intermediate conductance Ca2+-activated K+ channel hIK1.

Heather M Jones1, Kirk L Hamilton, Glenn D Papworth, Colin A Syme, Simon C Watkins, Neil A Bradbury, Daniel C Devor.   

Abstract

The role of the NH(2)-terminal leucine zipper and dileucine motifs of hIK1 in the assembly, trafficking, and function of the channel was investigated using cell surface immunoprecipitation, co-immunoprecipitation (Co-IP), immunoblot, and whole-cell patch clamp techniques. Mutation of the NH(2)-terminal leucine zipper at amino acid positions 18 and 25 (L18A/L25A) resulted in a complete loss of steady-state protein expression, cell surface expression, and whole-cell current density. Inhibition of proteasomal degradation with lactacystin restored L18A/L25A protein expression, although this channel was not expressed at the cell surface as assessed by cell surface immunoprecipitation and whole-cell patch clamp. In contrast, inhibitors of lysosomal degradation (leupeptin/pepstatin) and endocytosis (chloroquine) had little effect on L18A/L25A protein expression or localization. Further studies confirmed the rapid degradation of this channel, having a time constant of 19.0 +/- 1.3 min compared with 3.2 +/- 0.8 h for wild type hIK1. Co-expression studies demonstrated that the L18A/L25A channel associates with wild type channel, thereby attenuating its expression at the cell surface. Co-IP studies confirmed this association. However, L18A/L25A channels failed to form homotetrameric channels, as assessed by Co-IP, suggesting the NH(2) terminus plays a role in tetrameric channel assembly. As with the leucine zipper, mutation of the dileucine motif to alanines, L18A/L19A, resulted in a near complete loss in steady-state protein expression with the protein being similarly targeted to the proteasome for degradation. In contrast to our results on the leucine zipper, however, both chloroquine and growing the cells at the permissive temperature of 27 degrees C restored expression of L18A/L19A at the cell surface, suggesting that the defect in the channel trafficking is the result of a subtle folding error. In conclusion, we demonstrate that the NH(2) terminus of hIK1 contains overlapping leucine zipper and dileucine motifs essential for channel assembly and trafficking to the plasma membrane.

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Year:  2004        PMID: 14754884     DOI: 10.1074/jbc.M400069200

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


  22 in total

1.  ESCRT-dependent targeting of plasma membrane localized KCa3.1 to the lysosomes.

Authors:  Corina M Balut; Yajuan Gao; Sandra A Murray; Patrick H Thibodeau; Daniel C Devor
Journal:  Am J Physiol Cell Physiol       Date:  2010-08-18       Impact factor: 4.249

2.  Recycling of the Ca2+-activated K+ channel, KCa2.3, is dependent upon RME-1, Rab35/EPI64C, and an N-terminal domain.

Authors:  Yajuan Gao; Corina M Balut; Mark A Bailey; Genaro Patino-Lopez; Stephen Shaw; Daniel C Devor
Journal:  J Biol Chem       Date:  2010-04-01       Impact factor: 5.157

3.  Inhibition of the KCa3.1 channels by AMP-activated protein kinase in human airway epithelial cells.

Authors:  Hélène Klein; Line Garneau; Nguyen Thu Ngan Trinh; Anik Privé; François Dionne; Eugénie Goupil; Dominique Thuringer; Lucie Parent; Emmanuelle Brochiero; Rémy Sauvé
Journal:  Am J Physiol Cell Physiol       Date:  2008-12-03       Impact factor: 4.249

4.  An NH2-terminal multi-basic RKR motif is required for the ATP-dependent regulation of hIK1.

Authors:  Heather M Jones; Mark A Bailey; Catherine J Baty; Gordon G Macgregor; Colin A Syme; Kirk L Hamilton; Daniel C Devor
Journal:  Channels (Austin)       Date:  2007-02-12       Impact factor: 2.581

5.  Role of ubiquitylation and USP8-dependent deubiquitylation in the endocytosis and lysosomal targeting of plasma membrane KCa3.1.

Authors:  Corina M Balut; Christian M Loch; Daniel C Devor
Journal:  FASEB J       Date:  2011-08-09       Impact factor: 5.191

6.  WNK4 kinase inhibits Maxi K channel activity by a kinase-dependent mechanism.

Authors:  Jieqiu Zhuang; Xuemei Zhang; Dexuan Wang; Juan Li; Bo Zhou; Zhen Shi; Dingying Gu; Donald D Denson; Douglas C Eaton; Hui Cai
Journal:  Am J Physiol Renal Physiol       Date:  2011-05-25

7.  Calcium-activated K+ channels increase cell proliferation independent of K+ conductance.

Authors:  Joanne E Millership; Daniel C Devor; Kirk L Hamilton; Corina M Balut; Jason I E Bruce; Ian M Fearon
Journal:  Am J Physiol Cell Physiol       Date:  2010-12-01       Impact factor: 4.249

8.  Regulation of CFTR trafficking by its R domain.

Authors:  Christopher M Lewarchik; Kathryn W Peters; Juanjuan Qi; Raymond A Frizzell
Journal:  J Biol Chem       Date:  2008-08-11       Impact factor: 5.157

Review 9.  Trafficking of intermediate (KCa3.1) and small (KCa2.x) conductance, Ca(2+)-activated K(+) channels: a novel target for medicinal chemistry efforts?

Authors:  Corina M Balut; Kirk L Hamilton; Daniel C Devor
Journal:  ChemMedChem       Date:  2012-08-07       Impact factor: 3.466

10.  Mechanistic details of BK channel inhibition by the intermediate conductance, Ca2+-activated K channel.

Authors:  Jill Thompson; Ted Begenisich
Journal:  Channels (Austin)       Date:  2009-05-18       Impact factor: 2.581

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