4.7 Article

Alternative splicing may contribute to time-dependent manifestation of inherited erythromelalgia

期刊

BRAIN
卷 133, 期 -, 页码 1823-1835

出版社

OXFORD UNIV PRESS
DOI: 10.1093/brain/awq114

关键词

pain; SCN9A; sodium channel; channelopathy; splice variants

资金

  1. National Multiple Sclerosis Society
  2. Rehabilitation Research Service and Medical Research Service
  3. Department of Veterans Affairs
  4. Erythermalgia Association
  5. EFIC Grunenthal
  6. German Research Foundation (DFG) [KFO130.2, TP1]
  7. Centre for Neuroscience and Regeneration Research is a Collaboration of the Paralyzed Veterans of America
  8. Yale University

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The Na(v)1.7 sodium channel is preferentially expressed in nocioceptive dorsal root ganglion and sympathetic ganglion neurons. Gain-of-function mutations in Na(v)1.7 produce the nocioceptor hyperexcitability underlying inherited erythromelalgia, characterized in most kindreds by early-age onset of severe pain. Here we describe a mutation (Na(v)1.7-G616R) in a pedigree with adult-onset of pain in some family members. The mutation shifts the voltage-dependence of channel fast-inactivation in a depolarizing direction in the adult-long, but not in the neonatal-short splicing isoform of Na(v)1.7 in dorsal root ganglion neurons. Altered inactivation does not depend on the age of the dorsal root ganglion neurons in which the mutant is expressed. Expression of the mutant adult-long, but not the mutant neonatal-short, isoform of Na(v)1.7 renders dorsal root ganglion neurons hyperexcitable, reducing the current threshold for generation of action potentials, increasing spontaneous activity and increasing the frequency of firing in response to graded suprathreshold stimuli. This study shows that a change in relative expression of splice isoforms can contribute to time-dependent manifestation of the functional phenotype of a sodium channelopathy.

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