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果蝇抗菌肽(Drosomycin)是黑腹果蝇的一种先天性免疫肽,它与果蝇的电压门控钠通道相互作用。

Drosomycin, an innate immunity peptide of Drosophila melanogaster, interacts with the fly voltage-gated sodium channel.

作者信息

Cohen Lior, Moran Yehu, Sharon Amir, Segal Daniel, Gordon Dalia, Gurevitz Michael

机构信息

Department of Plant Sciences, George S. Wise Faculty of Life Sciences, Tel Aviv University, Ramat Aviv, Tel Aviv 69978, Israel.

出版信息

J Biol Chem. 2009 Aug 28;284(35):23558-63. doi: 10.1074/jbc.M109.023358. Epub 2009 Jul 1.

Abstract

Several peptide families, including insect antimicrobial peptides, plant protease inhibitors, and ion channel gating modifiers, as well as blockers from scorpions, bear a common CSalphabeta scaffold. The high structural similarity between two peptides containing this scaffold, drosomycin and a truncated scorpion beta-toxin, has prompted us to examine and compare their biological effects. Drosomycin is the most expressed antimicrobial peptide in Drosophila melanogaster immune response. A truncated scorpion beta-toxin is capable of binding and inducing conformational alteration of voltage-gated sodium channels. Here, we show that both peptides (i) exhibit anti-fungal activity at micromolar concentrations; (ii) enhance allosterically at nanomolar concentration the activity of LqhalphaIT, a scorpion alpha toxin that modulates the inactivation of the D. melanogaster voltage-gated sodium channel (DmNa(v)1); and (iii) inhibit the facilitating effect of the polyether brevetoxin-2 on DmNa(v)1 activation. Thus, the short CSalphabeta scaffold of drosomycin and the truncated scorpion toxin can maintain more than one bioactivity, and, in light of this new observation, we suggest that the biological role of peptides bearing this scaffold should be carefully examined. As for drosomycin, we discuss the intriguing possibility that it has additional functions in the fly, as implied by its tight interaction with DmNa(v)1.

摘要

包括昆虫抗菌肽、植物蛋白酶抑制剂、离子通道门控修饰剂以及来自蝎子的阻滞剂在内的几个肽家族都具有共同的CSαβ支架结构。含有这种支架结构的两种肽——果蝇抗菌肽和一种截短的蝎子β毒素之间高度的结构相似性,促使我们研究并比较它们的生物学效应。果蝇抗菌肽是黑腹果蝇免疫反应中表达最丰富的抗菌肽。一种截短的蝎子β毒素能够结合并诱导电压门控钠通道的构象改变。在此,我们表明这两种肽:(i)在微摩尔浓度下表现出抗真菌活性;(ii)在纳摩尔浓度下变构增强LqhalphaIT(一种调节黑腹果蝇电压门控钠通道(DmNa(v)1)失活的蝎子α毒素)的活性;(iii)抑制聚醚短裸甲藻毒素-2对DmNa(v)1激活的促进作用。因此,果蝇抗菌肽和截短的蝎子毒素的短CSαβ支架结构可以维持不止一种生物活性,鉴于这一新发现,我们建议应仔细研究带有这种支架结构的肽的生物学作用。至于果蝇抗菌肽,我们讨论了一种有趣的可能性,即正如其与DmNa(v)1的紧密相互作用所暗示的那样,它在果蝇中具有其他功能。

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