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红火蚁的 HsTRPA,作为伤害感受器发挥作用,并揭示了 HsTRPA 通道的进化可塑性。

HsTRPA of the Red Imported Fire Ant, , Functions as a Nocisensor and Uncovers the Evolutionary Plasticity of HsTRPA Channels.

机构信息

Department of Biological Sciences, Xi'an Jiaotong-Liverpool University, Jiangsu Province 215123, China.

Department of Physiological Sciences, SOKENDAI (the Graduate University for Advanced Studies), Okazaki, 444-8585, Japan.

出版信息

eNeuro. 2018 Feb 6;5(1). doi: 10.1523/ENEURO.0327-17.2018. eCollection 2018 Jan-Feb.

Abstract

, the red imported fire ant, represents one of the most devastating invasive species. To understand their sensory physiology, we identified and characterized their Hymenoptera-specific (Hs) TRPA channel, SiHsTRPA. Consistent with the sensory functions of SiHsTRPA, it is activated by heat, an electrophile, and an insect repellent. Nevertheless, SiHsTRPA does not respond to most of the honey bee ortholog (AmHsTRPA)-activating compounds. The jewel wasp ortholog (NvHsTRPA) is activated by these compounds even though it outgroups both AmHsTRPA and SiHsTRPA. Characterization of AmHsTRPA/SiHsTRPA chimeric channels revealed that the amino acids in the N terminus, as well as ankyrin repeat 2 (AR2) of AmHsTRPA, are essential for the response to camphor. Furthermore, amino acids in ARs 3 and 5-7 were specifically required for the response to diallyl disulfide. Thus, amino acid substitutions in the corresponding domains of SiHsTRPA during evolution would be responsible for the loss of chemical sensitivity. SiHsTRPA-activating compounds repel red imported fire ants, suggesting that SiHsTRPA functions as a sensor for noxious compounds. SiHsTRPA represents an example of the species-specific modulation of orthologous TRPA channel properties by amino acid substitutions in multiple domains, and SiHsTRPA-activating compounds could be used to develop a method for controlling red imported fire ants.

摘要

红火蚁是最具破坏性的入侵物种之一。为了了解它们的感觉生理学,我们鉴定并表征了它们的膜翅目特异性(Hs)TRPA 通道,SiHsTRPA。与 SiHsTRPA 的感觉功能一致,它可被热、亲电体和昆虫驱避剂激活。然而,SiHsTRPA 对大多数蜜蜂同源物(AmHsTRPA)激活化合物没有反应。尽管 NvHsTRPA 与 AmHsTRPA 和 SiHsTRPA 都不同群,但它仍被这些化合物激活。AmHsTRPA/SiHsTRPA 嵌合通道的表征表明,AmHsTRPA 的 N 端氨基酸以及锚蛋白重复 2(AR2)对于樟脑的反应是必需的。此外,ARs 3 和 5-7 中的氨基酸对于二烯丙基二硫代的反应是特异性必需的。因此,在进化过程中 SiHsTRPA 中相应结构域的氨基酸取代将导致对化学敏感性的丧失。激活 SiHsTRPA 的化合物会驱赶红火蚁,这表明 SiHsTRPA 作为有害化合物的传感器发挥作用。SiHsTRPA 代表了通过多个结构域的氨基酸取代对同源 TRPA 通道特性的物种特异性调节的一个例子,SiHsTRPA 激活化合物可用于开发控制红火蚁的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/afe2/5810042/4fa8d4e10d3e/enu001182532r001.jpg

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