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Identification of two cationic amino acid transporters required for nutritional signaling during mosquito reproduction

机译:蚊子繁殖过程中营养信号传递所需的两种阳离子氨基酸转运蛋白的鉴定

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摘要

The defining characteristic of anautogenous mosquitoes is their requirement for a blood meal to initiate reproduction. The need for blood drives the association of vector and host, and is the primary reason why anautogenous mosquitoes are effective disease vectors. During mosquito vitellogenesis, a key process in reproduction, yolk protein precursor (YPP) gene expression is activated specifically in the fat body, the insect analogue of the vertebrate liver. We have demonstrated that blood meal derived amino acids (AAs) activate YPP genes via the target of rapamycin (TOR) signal transduction pathway. Here we show, by stimulating fat bodies with balanced AA solutions lacking individual AAs, that specific cationic and branched AAs are essential for activation of the vitellogenin (vg) gene, the major YPP gene. Treatment of fat bodies with AA uptake inhibitors results in a strong inhibition of AA-induced vg gene expression proving that an active transport mechanism is necessary to transduce the AA signal. We identified two cationic AA transporters (CATs) in the fat body of Aedes aegypti females - Aa slimfast and iCAT2. RNAi knockdown of slimfast and iCAT2 results in a strong decrease in the response to AAs by the vg gene similar to that seen due to TOR inhibition. These data demonstrate that active uptake of specific AAs plays a key role in nutritional signaling during the onset of vitellogenic gene expression in mosquitoes and it is mediated by two cationic AA transporters.
机译:自体蚊子的定义特征是它们需要血粉来启动繁殖。对血液的需求推动了媒介与宿主之间的联系,这也是自体蚊子成为有效疾病媒介的主要原因。在蚊子卵黄发生过程中,卵黄蛋白前体(YPP)基因的表达是生殖的关键过程,卵黄蛋白前体(YPP)基因的表达在脂肪体内(脊椎动物肝脏的昆虫类似物)被特别激活。我们已经证明血粉衍生氨基酸(AAs)通过雷帕霉素(TOR)信号转导靶标激活YPP基因。在这里,我们通过用缺乏单个AA的平衡AA溶液刺激脂肪体来显示,特定的阳离子和支链AA对于激活卵黄蛋白原(vg)基因(主要的YPP基因)至关重要。用AA摄取抑制剂处理脂肪体会强烈抑制AA诱导的vg基因表达,证明了转导AA信号必须有主动转运机制。我们在埃及伊蚊女性的脂肪体内发现了两种阳离子AA转运蛋白(CAT)-Aa slimfast和iCAT2。 Slimfast和iCAT2的RNAi敲除导致vg基因对AA的响应大大降低,这与由于TOR抑制所见相似。这些数据表明,在蚊子中发生卵黄蛋白基因表达的过程中,主动摄取特定AA在营养信号传导中起着关键作用,并且它是由两个阳离子AA转运蛋白介导的。

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