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首页> 外文期刊>Molecular pharmacology. >Splice Variants of pH-Sensitive Chloride Channel Identify a Key Determinant of Ivermectin Sensitivity in the Larvae of the Silkworm Bombyx mori
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Splice Variants of pH-Sensitive Chloride Channel Identify a Key Determinant of Ivermectin Sensitivity in the Larvae of the Silkworm Bombyx mori

机译:pH敏感性氯化物通道的剪接变体识别蚕丝虫森林幼虫中伊维菌素敏感性的关键决定因素

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摘要

The pH-sensitive chloride channels (pHCls) are broadly expressed in insects, but little is known about their physiologic role, diversity, and sensitivity to insecticides acting on relevant chloride channels. Here we have sequenced 50 transcripts of the pHCl- 1 gene from the brain, third thoracic ganglion ( T3G), and midgut of larvae of silkworm Bombyx mori. It was found that >50 variants were expressed with distinct splicing in the T3G compared with the brain and midgut. Of the variants detected, variant 9, which was expressed most abundantly in the larvae, was reconstituted in Xenopus laevis oocytes to characterize its pH and ivermectin sensitivity. Variant 9 formed a functional pHCl with half- maximal activation at a pH of 7.87,and was activated by ivermectin irrespective of the extracellular pH. This was in contrast to variant 1, which was activated more profoundly at acidic rather than basic pH. To identify a key determinant for such differential ivermectin sensitivity, different amino acids in variants 1 and 9 were swapped, and the effects of the mutations on ivermectin sensitivity were investigated. The V275S mutation of variant 1 enhanced ivermectin sensitivity, whereas the S275V mutation of variant 9 caused a reduction in sensitivity. In homology models of the Bombyx pHCls, Val275 of variant 1 interacted more strongly with Ala273 than Ser275 of variant 9 at the channel gate. This interaction is likely to prevent ivermectin-induced opening of the channel, accounting, at least partially, for the differential macrolide action on the two variants.
机译:pH敏感的氯化物通道(PHCLS)在昆虫中广泛表达,但对其生理作用,多样性和对相关氯化物通道作用的杀虫剂的敏感性毫无疑问。在这里,我们已经测序了来自脑,第三胸神经节(T3G)的PHCL-1基因的50份转录物,以及蚕豆莫利幼虫的中肠。结果发现,与脑和中肠相比,在T3G中表达了50个变体。检测到的变体中,在幼虫中大量表达的变体9在Xenopus Laevis卵母细胞中重构,以表征其pH和伊维菌素敏感性。变型9形成具有7.87的pH的半最大激活的功能性pHCl,并且通过伊维菌素引起的,而不管细胞外pH值如何。这与变体1相反,其在酸性而不是碱性pH下更深刻地活化。为了鉴定这种微分氨酰胺敏感性的关键决定因素,改变了变体1和9中的不同氨基酸,研究了突变对伊维菌素敏感性的影响。变体1的V275S突变增强了伊维菌素敏感性,而变体9的S275V突变导致灵敏度的降低。在Bombyx PHCLS的同源模型中,变型1的Val275在通道栅极处比Ala273更强烈地与Ala273相互作用。该相互作用可能会导致伊维菌素诱导的通道开口,至少部分地核对两种变体上的差分大环内酯作用。

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  • 来源
    《Molecular pharmacology.》 |2017年第4期|共9页
  • 作者单位

    Kindai Univ Dept Appl Biol Chem Fac Agr 3327-204 Nakamachi Nara 6318505 Japan;

    Kindai Univ Dept Appl Biol Chem Fac Agr 3327-204 Nakamachi Nara 6318505 Japan;

    Tokyo Univ Agr &

    Technol Dept Sci Biol Prod Fuchu Tokyo Japan;

    Kindai Univ Dept Appl Biol Chem Fac Agr 3327-204 Nakamachi Nara 6318505 Japan;

    Kindai Univ Dept Appl Biol Chem Fac Agr 3327-204 Nakamachi Nara 6318505 Japan;

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  • 正文语种 eng
  • 中图分类 药理学;
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