Isabelle Andres-Enguix
University of Oxford
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Publication
Featured researches published by Isabelle Andres-Enguix.
Nature Medicine | 2010
Ronald G. Lafrenière; M Zameel Cader; Jean-François Poulin; Isabelle Andres-Enguix; Maryse Simoneau; Namrata Gupta; Karine Boisvert; François Lafrenière; Shannon McLaughlan; Marie-Pierre Dubé; Martin M Marcinkiewicz; Sreeram V. Ramagopalan; Olaf Ansorge; Bernard Brais; Jorge Sequeiros; José Pereira-Monteiro; Lyn R. Griffiths; Stephen J. Tucker; George C. Ebers; Guy A. Rouleau
Migraine with aura is a common, debilitating, recurrent headache disorder associated with transient and reversible focal neurological symptoms. A role has been suggested for the two-pore domain (K2P) potassium channel, TWIK-related spinal cord potassium channel (TRESK, encoded by KCNK18), in pain pathways and general anaesthesia. We therefore examined whether TRESK is involved in migraine by screening the KCNK18 gene in subjects diagnosed with migraine. Here we report a frameshift mutation, F139WfsX24, which segregates perfectly with typical migraine with aura in a large pedigree. We also identified prominent TRESK expression in migraine-salient areas such as the trigeminal ganglion. Functional characterization of this mutation demonstrates that it causes a complete loss of TRESK function and that the mutant subunit suppresses wild-type channel function through a dominant-negative effect, thus explaining the dominant penetrance of this allele. These results therefore support a role for TRESK in the pathogenesis of typical migraine with aura and further support the role of this channel as a potential therapeutic target.
Scientific Reports | 2012
Isabelle Andres-Enguix; Lijun Shang; Phillip J. Stansfeld; Julia M. Morahan; Mark S.P. Sansom; Ronald G. Lafrenière; Bishakha Roy; Lyn R. Griffiths; Guy A. Rouleau; George C. Ebers; Zameel M. Cader; Stephen J. Tucker
A loss of function mutation in the TRESK K2P potassium channel (KCNK18), has recently been linked with typical familial migraine with aura. We now report the functional characterisation of additional TRESK channel missense variants identified in unrelated patients. Several variants either had no apparent functional effect, or they caused a reduction in channel activity. However, the C110R variant was found to cause a complete loss of TRESK function, yet is present in both sporadic migraine and control cohorts, and no variation in KCNK18 copy number was found. Thus despite the previously identified association between loss of TRESK channel activity and migraine in a large multigenerational pedigree, this finding indicates that a single non-functional TRESK variant is not alone sufficient to cause typical migraine and highlights the genetic complexity of this disorder.
Journal of Biological Chemistry | 2010
Jennifer J. Paynter; Isabelle Andres-Enguix; Philip W. Fowler; Stephen Tottey; Wayland W.L. Cheng; Decha Enkvetchakul; Vassiliy N. Bavro; Yoshio Kusakabe; Mark S.P. Sansom; Nigel J. Robinson; Colin G. Nichols; Stephen J. Tucker
The superfamily of prokaryotic inwardly rectifying (KirBac) potassium channels is homologous to mammalian Kir channels. However, relatively little is known about their regulation or about their physiological role in vivo. In this study, we have used random mutagenesis and genetic complementation in K+-auxotrophic Escherichia coli and Saccharomyces cerevisiae to identify activatory mutations in a range of different KirBac channels. We also show that the KirBac6.1 gene (slr5078) is necessary for normal growth of the cyanobacterium Synechocystis PCC6803. Functional analysis and molecular dynamics simulations of selected activatory mutations identified regions within the slide helix, transmembrane helices, and C terminus that function as important regulators of KirBac channel activity, as well as a region close to the selectivity filter of KirBac3.1 that may have an effect on gating. In particular, the mutations identified in TM2 favor a model of KirBac channel gating in which opening of the pore at the helix-bundle crossing plays a far more important role than has recently been proposed.
The EMBO Journal | 2011
Paula L. Piechotta; Markus Rapedius; Phillip J. Stansfeld; Murali K. Bollepalli; Gunter Ehrlich; Isabelle Andres-Enguix; Hariolf Fritzenschaft; Niels Decher; Mark S.P. Sansom; Stephen J. Tucker; Thomas Baukrowitz
Channels | 2008
Jennifer J. Paynter; Peter Sarkies; Isabelle Andres-Enguix; Stephen J. Tucker
Institute of Health and Biomedical Innovation | 2012
Isabelle Andres-Enguix; Lijun Shang; Phillip J. Stansfeld; Julia M. Morahan; Mark S.P. Sansom; Ronald G. Lafrenière; Bishakha Roy; Lyn R. Griffiths; Guy A. Rouleau; George C. Ebers; Zameel M. Cader; Stephen J. Tucker
Biophysical Journal | 2012
Markus Rapedius; Paula L. Piechotta; Philip J. Stansfeld; Murali K. Bollepalli; Gunter Ehrlich; Isabelle Andres-Enguix; Hariolf Fritzenschaft; Niels Decher; Mark S.P. Sansom; Stephen J. Tucker; Thomas Baukrowitz
Proceedings of The Physiological Society | 2011
Paula L. Piechotta; Markus Rapedius; Philip J. Stansfeld; Murali K. Bollepalli; Gunter Ehrlich; Isabelle Andres-Enguix; Hariolf Fritzenschaft; Niels Decher; Sansom; Stephen J. Tucker; Thomas Baukrowitz
Biophysical Journal | 2011
Isabelle Andres-Enguix; Lijun Shang; Phillip J. Stansfeld; Mark S.P. Sansom; M Zameel Cader; Stephen J. Tucker
Archive | 2010
Jennifer J. Paynter; Isabelle Andres-Enguix; Philip W. Fowler; Stephen Tottey; Wayland W.L. Cheng; Decha Enkvetchakul; Vassiliy N. Bavro; Yoshio Kusakabe; Mark S.P. Sansom; Nigel J. Robinson; Colin G. Nichols; Stephen J. Tucker