Background: Gain-of-function mutations in SCN9A gene that encodes the voltage-gated sodium channel NaV1.7 have been associated with a wide spectrum of painful syndromes in humans including inherited erythromelalgia, paroxysmal extreme pain disorder and small fibre neuropathy. These mutations change the biophysical properties of NaV1.7 channels leading to hyperexcitability of dorsal root ganglion nociceptors and pain symptoms. There is a need for better understanding of how gain-of-function mutations alter the atomic structure of Nav1.7.Results: We used homology modeling to build an atomic model of NaV1.7 and a network-based theoretical approach, which can predict interatomic interactions and connectivity arrangements, to investigate how pai...
Background and PurposeThe voltage‐gated sodium channel Nav1.7 is essential for adequate perception o...
Painful small fiber neuropathy is a challenging medical condition with no effective treatment. Non-g...
Painful small fiber neuropathy is a challenging medical condition with no effective treatment. Non-g...
Background: Gain-of-function mutations in SCN9A gene that encodes the voltage-gated sodium channel N...
Thesis (Master's)--University of Washington, 2020Voltage-gated sodium channels (Navs) are responsibl...
Recent scientific discoveries have confirmed a pivotal role for the NaV 1.7 voltage-gated sodium cha...
Applications of machine learning and graph theory techniques to neuroscience have witnessed an incre...
Chronic pain often represents a severe, debilitating condition. Up to 10% of the worldwide populatio...
Item does not contain fulltextOBJECTIVE: Gain-of-function mutations in Nav1.9 have been identified i...
The voltage-gated sodium-channel type IX alpha subunit, known as Na(v)1.7 and encoded by the gene SC...
Background: Mutation-induced variations in the functional architecture of the NaV1.7 channel protein...
Abstract Background Individuals with an extremely rare inherited condition, termed Congenital Insens...
Gain-of-function mutations in voltage-gated sodium channels (NaV1.7, NaV1.8, and NaV1.9) are known c...
Nav1.9 has four domains, each of which consistent of 6 transmembrane segments (S1-S6). S4 segment (S...
Chronic pain is a global problem affecting up to 20% of the world’s population and has a significant...
Background and PurposeThe voltage‐gated sodium channel Nav1.7 is essential for adequate perception o...
Painful small fiber neuropathy is a challenging medical condition with no effective treatment. Non-g...
Painful small fiber neuropathy is a challenging medical condition with no effective treatment. Non-g...
Background: Gain-of-function mutations in SCN9A gene that encodes the voltage-gated sodium channel N...
Thesis (Master's)--University of Washington, 2020Voltage-gated sodium channels (Navs) are responsibl...
Recent scientific discoveries have confirmed a pivotal role for the NaV 1.7 voltage-gated sodium cha...
Applications of machine learning and graph theory techniques to neuroscience have witnessed an incre...
Chronic pain often represents a severe, debilitating condition. Up to 10% of the worldwide populatio...
Item does not contain fulltextOBJECTIVE: Gain-of-function mutations in Nav1.9 have been identified i...
The voltage-gated sodium-channel type IX alpha subunit, known as Na(v)1.7 and encoded by the gene SC...
Background: Mutation-induced variations in the functional architecture of the NaV1.7 channel protein...
Abstract Background Individuals with an extremely rare inherited condition, termed Congenital Insens...
Gain-of-function mutations in voltage-gated sodium channels (NaV1.7, NaV1.8, and NaV1.9) are known c...
Nav1.9 has four domains, each of which consistent of 6 transmembrane segments (S1-S6). S4 segment (S...
Chronic pain is a global problem affecting up to 20% of the world’s population and has a significant...
Background and PurposeThe voltage‐gated sodium channel Nav1.7 is essential for adequate perception o...
Painful small fiber neuropathy is a challenging medical condition with no effective treatment. Non-g...
Painful small fiber neuropathy is a challenging medical condition with no effective treatment. Non-g...