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首页> 外文期刊>Open Biology >Isoform-specific modulation of the chemical sensitivity of conserved TRPA1 channel in the major honeybee ectoparasitic mite, Tropilaelaps mercedesae
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Isoform-specific modulation of the chemical sensitivity of conserved TRPA1 channel in the major honeybee ectoparasitic mite, Tropilaelaps mercedesae

机译:异型特异性调节主要蜜蜂外寄生螨Tropilaelaps mercedesae中保守的TRPA1通道的化学敏感性

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We identified and characterized the TRPA1 channel of Tropilaelaps mercedesae (TmTRPA1), one of two major species of honeybee ectoparasitic mite. Three TmTRPA1 isoforms with unique N-terminal sequences were activated by heat, and the isoform highly expressed in the mite's front legs, TmTRPA1b, was also activated by 27 plant-derived compounds including electrophiles. This suggests that the heat- and electrophile-dependent gating mechanisms as nocisensitive TRPA1 channel are well conserved between arthropod species. Intriguingly, one TmTRPA1 isoform, TmTRPA1a, was activated by only six compounds compared with two other isoforms, demonstrating that the N-terminal sequences are critical determinants for the chemical sensitivity. This is the first example of isoform-specific modulation of chemical sensitivity of TRPA1 channel in one species. α-terpineol showed repellent activity towards T. mercedesae in a laboratory assay and repressed T. mercedesae entry for reproduction into the brood cells with fifth instar larvae in hives. Thus, α-terpineol could be used as the potential compound to control two major honeybee ectoparasitic mites, T. mercedesae and Varroa destructor, in the apiculture industry.
机译:我们鉴定并表征了Tropilaelaps mercedesae(TmTRPA1)的TRPA1通道,这是蜜蜂的两种主要的体外寄生螨之一。通过加热激活了三个具有独特N端序列的TmTRPA1亚型,在螨虫前腿中高表达的亚型TmTRPA1b也被27种植物衍生的化合物(包括亲电试剂)激活了。这表明节肢动物物种之间作为热敏TRPA1通道的依赖于热和亲电子的门控机制是非常保守的。有趣的是,与其他两种异构体相比,一种TmTRPA1异构体TmTRPA1a仅被6种化合物激活,这表明N末端序列是化学敏感性的关键决定因素。这是一个物种中TRPA1通道化学敏感性的同工型特异性调节的第一个例子。在实验室测定中,α-松油醇显示出对T. mercedesae的驱避活性,并抑制了T. mercedesae进入,使其繁殖为荨麻疹中的第五龄幼虫。因此,在养蜂业中,α-松油醇可以用作控制两种主要的蜜蜂体外寄生螨,即T. mercedesae和Varroa破坏剂。

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