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Mutations in Potassium Channel Kir2.6 Cause Susceptibility to Thyrotoxic Hypokalemic Periodic Paralysis

  • Devon P. Ryan
  • , Magnus R. Dias da Silva
  • , Tuck Wah Soong
  • , Bertrand Fontaine
  • , Matt R. Donaldson
  • , Annie W.C. Kung
  • , Wallaya Jongjaroenprasert
  • , Mui Cheng Liang
  • , Daphne H.C. Khoo
  • , Jin Seng Cheah
  • , Su Chin Ho
  • , Harold S. Bernstein
  • , Rui M.B. Maciel
  • , Robert H. Brown
  • , Louis J. Ptáček
  • University of California, San Francisco
  • University of California San Francisco
  • National Neuroscience Institute of Singapore
  • National University of Singapore
  • Université René-Descartes
  • University of Hong Kong
  • Singapore General Hospital
  • Department of Medicine
  • Federal University of São Paulo
  • Massachusetts General Hospital

Research output: Contribution to journalArticlepeer-review

246 Citations (Scopus)

Abstract

Thyrotoxic hypokalemic periodic paralysis (TPP) is characterized by acute attacks of weakness, hypokalemia, and thyrotoxicosis of various etiologies. These transient attacks resemble those of patients with familial hypokalemic periodic paralysis (hypoKPP) and resolve with treatment of the underlying hyperthyroidism. Because of the phenotypic similarity of these conditions, we hypothesized that TPP might also be a channelopathy. While sequencing candidate genes, we identified a previously unreported gene (not present in human sequence databases) that encodes an inwardly rectifying potassium (Kir) channel, Kir2.6. This channel, nearly identical to Kir2.2, is expressed in skeletal muscle and is transcriptionally regulated by thyroid hormone. Expression of Kir2.6 in mammalian cells revealed normal Kir currents in whole-cell and single-channel recordings. Kir2.6 mutations were present in up to 33% of the unrelated TPP patients in our collection. Some of these mutations clearly alter a variety of Kir2.6 properties, all altering muscle membrane excitability leading to paralysis.

Original languageEnglish
Pages (from-to)88-98
Number of pages11
JournalCell
Volume140
Issue number1
DOIs
Publication statusPublished - 8 Jan 2010

Keywords

  • HUMDISEASE
  • PROTEINS
  • SIGNALING

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