Key result
Novel Nav1.7 mutation I234T induces an ~18 mV activation shift consistent with severe pain.
Case Report (n=1)
The novel Nav1.7 I234T mutation causes a massive hyperpolarizing shift in activation, explaining the severe pain phenotype in a child with inherited erythromelalgia.
Hypothesis-generating for Nav1.7-targeted pain therapies; larger cohorts needed before clinical translation.
Dominant gain-of-function mutations that hyperpolarize activation of the Na(v)1.7 sodium channel have been linked to inherited erythromelalgia (IEM), a disorder characterized by severe pain and redness in the feet and hands in response to mild warmth. Pharmacotherapy remains largely ineffective for IEM patients with cooling and avoidance of triggers being the most reliable methods to relieve pain. We now report a 5 year old patient with pain precipitated by warmth, together with redness in her hands and feet. Her pain episodes were first reported at 12 months, and by the age of 15-16 months were triggered by sitting as well as heat. Pain has been severe, inducing self-mutilation, with limited relief from drug treatment. Our analysis of the patient's genomic DNA identified a novel Na(v)1.7 mutation which replaces isoleucine 234 by threonine (I234T) within domain I/S4-S5 linker. Whole-cell voltage-clamp analysis shows a I234T-induced shift of -18 mV in the voltage-dependence of activation, accelerated time-to-peak, slowed deactivation and enhanced responses to slow ramp depolarizations, together with a -21 mV shift in the voltage-dependence of slow-inactivation. Our data show that I234T induces the largest activation shift for Na(v)1.7 mutations reported thus far. Although enhanced slow-inactivation may attenuate the gain-of-function of the I234T mutation, the shift in activation appears to be dominant, and is consistent with the severe pain symptoms reported in this patient.
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Ahn et al. (2010) conducted a case report in Inherited erythromelalgia (n=1). Nav1.7 sodium channel mutation I234T was evaluated on Voltage-dependence of activation and slow-inactivation. The novel Nav1.7 mutation I234T induced a -18 mV shift in the voltage-dependence of activation and a -21 mV shift in slow-inactivation, consistent with the patient's severe pain symptoms.
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