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Atypical pharmacology of schistosome TRPA1-like ion channels

机译:血吸虫样TRPA1样离子通道的非典型药理

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摘要

Parasitic flatworms of the genus Schistosoma cause schistosomiasis, a neglected tropical disease estimated to affect over 200 million people worldwide. Praziquantel is the only antischistosomal currently available for treatment, and there is an urgent need for new therapeutics. Ion channels play key roles in physiology and are targets for many anthelmintics, yet only a few representatives have been characterized in any detail in schistosomes and other parasitic helminths. The transient receptor potential (TRP) channel superfamily comprises a diverse family of non-selective cation channels that play key roles in sensory transduction and a wide range of other functions. TRP channels fall into several subfamilies. Members of both the TRPA and TRPV subfamilies transduce nociceptive and inflammatory signals in mammals, and often also respond to chemical and thermal signals. We previously showed that although schistosomes contain no genes predicted to encode TRPV channels, TRPV1-selective activators such as capsaicin and resiniferatoxin elicit dramatic hyperactivity in adult worms and schistosomula. Surprisingly, this response requires expression of a S. mansoni TRPA1-like orthologue (SmTRPA). Here, we show that capsaicin induces a rise in intracellular Ca2+ in mammalian cells expressing either SmTRPA or a S. haematobium TRPA1 orthologue (ShTRPA). We also test SmTRPA and ShTRPA responses to various TRPV1 and TRPA1 modulators. Interestingly, in contrast to SmTRPA, ShTRPA is not activated by the TRPA1 activator AITC (allyl isothiocyanate), nor do S. haematobium adult worms respond to this compound, a potentially intriguing species difference. Notably, 4-hydroxynonenal (4-HNE), a host-derived, inflammatory product that directly activates mammalian TRPA1, also activates both SmTRPA and ShTRPA. Our results point to parasite TRPA1-like channels which exhibit atypical, mixed TRPA1/TRPV1-like pharmacology, and which may also function to transduce endogenous host signals.
机译:血吸虫属的寄生扁虫引起血吸虫病,据估计是一种热带病,被认为是一种热带病,全球范围内影响着2亿多人。吡喹酮是目前唯一可用于治疗的抗血吸虫病,因此迫切需要新的治疗方法。离子通道在生理学中起着关键作用,并且是许多驱虫药的目标,但在血吸虫和其他寄生虫蠕虫中,只有很少的代表被详细描述。瞬态受体电位(TRP)通道超家族包含各种非选择性阳离子通道,这些通道在感觉传导和许多其他功能中发挥关键作用。 TRP频道分为几个子系列。 TRPA和TRPV亚家族的成员都在哺乳动物中传递伤害性和炎性信号,并且通常还对化学和热信号作出反应。我们以前表明,虽然血吸虫不包含预测编码TRPV通道的基因,但是TRPV1选择性激活剂(如辣椒素和树脂毒素)在成虫和血吸虫中引起戏剧性的过度活跃。出人意料的是,这种反应需要表达曼氏链球菌TRPA1样直向同源物(SmTRPA)。在这里,我们显示辣椒素在表达SmTRPA或血红球菌TRPA1直系同源物(ShTRPA)的哺乳动物细胞中诱导细胞内Ca 2 + 的升高。我们还测试了SmTRPA和ShTRPA对各种TRPV1和TRPA1调制器的响应。有趣的是,与SmTRPA相反,ShTRPA未被TRPA1激活剂AITC(异硫氰酸烯丙基烯丙基酯)激活,输血链球菌成虫也未对此化合物做出反应,这可能是一个引人入胜的物种差异。值得注意的是,直接激活哺乳动物TRPA1的源自宿主的炎症产物4-hydroxynonenal(4-HNE)也同时激活SmTRPA和ShTRPA。我们的研究结果表明,寄生虫类TRPA1通道表现出非典型的,混合的TRPA1 / TRPV1类药理作用,并且可能还具有转导内源性宿主信号的功能。

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