首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >PNAS Plus: Defects in coatomer protein I (COPI) transport cause blood feeding-induced mortality in Yellow Fever mosquitoes
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PNAS Plus: Defects in coatomer protein I (COPI) transport cause blood feeding-induced mortality in Yellow Fever mosquitoes

机译:PNAS Plus:包膜蛋白I(COPI)转运缺陷导致黄热蚊子因采食引起的死亡

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摘要

Blood feeding by vector mosquitoes provides the entry point for disease pathogens and presents an acute metabolic challenge that must be overcome to complete the gonotrophic cycle. Based on recent data showing that coatomer protein I (COPI) vesicle transport is involved in cellular processes beyond Golgi–endoplasmic reticulum retrograde protein trafficking, we disrupted COPI functions in the Yellow Fever mosquito Aedes aegypti to interfere with blood meal digestion. Surprisingly, we found that decreased expression of the γCOPI coatomer protein led to 89% mortality in blood-fed mosquitoes by 72 h postfeeding compared with 0% mortality in control dsRNA-injected blood-fed mosquitoes and 3% mortality in γCOPI dsRNA-injected sugar-fed mosquitoes. Similar results were obtained using dsRNA directed against five other COPI coatomer subunits (α, β, β′, δ, and ζ). We also examined midgut tissues by EM, quantitated heme in fecal samples, and characterized feeding-induced protein expression in midgut, fat body, and ovary tissues of COPI-deficient mosquitoes. We found that COPI defects disrupt epithelial cell membrane integrity, stimulate premature blood meal excretion, and block induced expression of several midgut protease genes. To study the role of COPI transport in ovarian development, we injected γCOPI dsRNA after blood feeding and found that, although blood digestion was normal, follicles in these mosquitoes were significantly smaller by 48 h postinjection and lacked eggshell proteins. Together, these data show that COPI functions are critical to mosquito blood digestion and egg maturation, a finding that could also apply to other blood-feeding arthropod vectors.
机译:媒介蚊子的采血为疾病病原体提供了切入点,并提出了急性代谢挑战,必须克服这一挑战才能完成营养营养循环。根据最近的数据显示,高聚物-内质网逆行蛋白运输过程中还涉及细胞外衣蛋白I(COPI)囊泡运输,我们破坏了黄热伊蚊埃及伊蚊的COPI功能,以干扰血粉消化。出人意料的是,我们发现,在喂食后72 h,γCOPI包膜蛋白表达的降低导致血蚊的死亡率为89%,而对照dsRNA注射的血蚊的死亡率为0%,γCOPIdsRNA注射的糖的死亡率为3%喂蚊子。使用针对其他五个COPI涂层亚基(α,β,β',δ和ζ)的dsRNA获得了相似的结果。我们还通过EM检查了中肠组织,对粪便样本中的血红素进行了定量,并表征了COPI缺陷型蚊子的中肠,脂肪体和卵巢组织中进食诱导的蛋白表达。我们发现COPI缺陷破坏上皮细胞膜的完整性,刺激过早的血粉排泄,并阻止几种中肠蛋白酶基因的诱导表达。为了研究COPI转运在卵巢发育中的作用,我们在采血后注射了γCOPIdsRNA,发现尽管血液消化正常,但注射后48 h这些蚊子中的卵泡明显变小,并且缺少蛋壳蛋白。这些数据加在一起表明,COPI功能对于蚊子血液的消化和卵的成熟至关重要,这一发现也可能适用于其他以血液为食的节肢动物载体。

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