Key result
The Ion Channels Variants Portal was created to compile 672 functionally characterized variants in human sodium channel genes, providing 4,658 structured observations from 264 research articles.
The creation of the Ion Channels Variants Portal provides a centralized, structured database of functionally characterized human sodium channel variants to aid in understanding pathologic mechanisms and predicting effects of new variations.
May aid sodium channel variant interpretation in channelopathies; leaves open clinical impact without validation studies.
Voltage-gated sodium channels are pore-forming transmembrane proteins that selectively allow sodium ions to flow across the plasma membrane according to the electro-chemical gradient thus mediating the rising phase of action potentials in excitable cells and playing key roles in physiological processes such as neurotransmission, skeletal muscle contraction, heart rhythm, and pain sensation. Genetic variations in the nine human genes encoding these channels are known to cause a large range of diseases affecting the nervous and cardiac systems. Understanding the molecular effect of genetic variations is critical for elucidating the pathologic mechanisms of known variations and in predicting the effect of newly discovered ones. To this end, we have created a Web-based tool, the Ion Channels Variants Portal, which compiles all variants characterized functionally in the human sodium channel genes. This portal describes 672 variants each associated with at least one molecular or clinical phenotypic impact, for a total of 4,658 observations extracted from 264 different research articles. These data were captured as structured annotations using standardized vocabularies and ontologies, such as the Gene Ontology and the Ion Channel ElectroPhysiology Ontology. All these data are available to the scientific community via neXtProt at https://www.nextprot.org/portals/navmut.
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Hinard et al. (2017) studied Voltage-gated sodium channel mutations. Ion Channels Variants Portal was evaluated on Compilation of functionally characterized variants. The Ion Channels Variants Portal was created to compile 672 functionally characterized variants in human sodium channel genes, providing 4,658 structured observations from 264 research articles.
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