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Merck

A tamoxifen receptor within a voltage-gated sodium channel.

Molecular cell (2021-01-28)
Altin Sula, David Hollingworth, Leo C T Ng, Megan Larmore, Paul G DeCaen, B A Wallace
摘要

Voltage-gated sodium channels are targets for many analgesic and antiepileptic drugs whose therapeutic mechanisms and binding sites have been well characterized. We describe the identification of a previously unidentified receptor site within the NavMs voltage-gated sodium channel. Tamoxifen, an estrogen receptor modulator, and its primary and secondary metabolic products bind at the intracellular exit of the channel, which is a site that is distinct from other previously characterized sodium channel drug sites. These compounds inhibit NavMs and human sodium channels with similar potencies and prevent sodium conductance by delaying channel recovery from the inactivated state. This study therefore not only describes the structure and pharmacology of a site that could be leveraged for the development of new drugs for the treatment of sodium channelopathies but may also have important implications for off-target health effects of this widely used therapeutic drug.

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泰莫西芬, ≥99%
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胎牛血清, USA origin, sterile-filtered, suitable for cell culture, suitable for hybridoma
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二甲基亚砜, ≥99.5% (GC), suitable for plant cell culture
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4-羟基他莫西芬, ≥70% Z isomer (remainder primarily E-isomer)
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聚(乙二醇), average Mn 400
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氯化钙 二水合物, for molecular biology, ≥99.0%
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过表达 C41 (DE3) 化学感受态细胞, for the highest protein expression
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乙二醇-双(2-氨基乙醚)-N,N,N′,N′-四乙酸, ≥97.0%
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他莫昔芬 柠檬酸盐, ≥99%
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(E/Z)-盐酸内多昔芬水合物, ≥98% (HPLC)
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N-Desmethyltamoxifen HCl, ≥98% (HPLC), solid