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Substrate specificity and transport mechanism of amino-acid transceptor Slimfast from Aedes aegypti

机译:埃及伊蚊氨基酸Slimfast受体的底物特异性和转运机制

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摘要

Anautogenous mosquitoes depend on vertebrate blood as nutrient source for their eggs. A highly efficient set of membrane transporters mediates the massive movement of nutrient amino acids between mosquito tissues after a blood meal. Here we report the characterization of the amino-acid transporter Slimfast (Slif) from the yellow-fever mosquito Aedes aegypti using codon-optimized heterologous expression. Slif is a well-known component of the target-of-rapamycin signalling pathway and fat body nutrient sensor, but its substrate specificity and transport mechanism were unknown. We found that Slif transports essential cationic and neutral amino acids with preference for arginine. It has an unusual dual-affinity mechanism with only the high affinity being Na+ dependent. Tissue-specific expression and blood meal-dependent regulation of Slif are consistent with conveyance of essential amino acids from gut to fat body. Slif represents a novel transport system and type of transceptor for sensing and transporting essential amino acids during mosquito reproduction.
机译:自生蚊子依靠脊椎动物的血液作为卵子的营养源。一组高效率的膜转运蛋白可以在餐后介导蚊子组织之间营养氨基酸的大量运动。在这里,我们使用密码子优化的异源表达报告了黄热蚊埃及伊蚊的氨基酸转运蛋白Slimfast(Slif)的表征。 Slif是雷帕霉素靶信号传导途径和脂肪体营养传感器的众所周知的成分,但其​​底物特异性和转运机制尚不清楚。我们发现,Slif运送必需的阳离子和中性氨基酸,并优先选择精氨酸。它具有不同寻常的双重亲和力机制,仅高亲和力是依赖于Na +的。 Slif的组织特异性表达和血粉依赖性调节与必需氨基酸从肠道到脂肪体的运输相一致。 Slif代表了一种新颖的运输系统和类型的收发器,用于在蚊子繁殖过程中感测和运输必需氨基酸。

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