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Distribution and Functional Characteristics of Voltage-Gated Sodium Channels in Immature Cochlear Hair Cells

Neurosci Bull. 2020; 
Zhou Y,,, Xia C, Yin M, Wang X,,, Wu H,,, Ji Y,.
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Codon Optimization … nine mutants (1–9) were generated and functionally compared These related mutant plasmids were produced using sequential PCR (GenScript Biotech Corp, Nanjing, China) Mutant 1 was generated by replacing two codons … Get A Quote

摘要

Voltage-gated sodium channels (VGSCs) are transiently expressed in cochlear hair cells before hearing onset and play an indispensable role in shaping spontaneous activity. In this study, we showed that Na+ currents shaped the spontaneous action potentials in developing mouse inner hair cells (IHCs) by decreasing the time required for the membrane potential to reach the action-potential threshold. In immature IHCs, we identified 9 known VGSC subtypes (Nav1.1α-1.9α), among which Nav1.7α was the most highly expressed subtype and the main contributor to Na+ currents in developing hair cells. Electrophysiological recordings of two cochlea-specific Nav1.7 variants (CbmNav1.7a and CbmNav1.7b) revealed a novel loss-... More

關鍵詞

Cochlear hair cell; Gating property; Post-transcriptional modification; Spontaneous action potential; Voltage-gated sodium channel
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