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Mosquito Rasputin interacts with chikungunya virus nsP3 and determines the infection rate in Aedes albopictus

机译:蚊子拉斯普汀与基孔肯雅病毒nsP3相互作用并确定白纹伊蚊的感染率

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Background Chikungunya virus (CHIKV) is an arthritogenic alphavirus (family Togaviridae), transmitted by Aedes species mosquitoes. CHIKV re-emerged in 2004 with multiple outbreaks worldwide and recently reached the Americas where it has infected over a million individuals in a rapidly expanding epidemic. While alphavirus replication is well understood in general, the specific function (s) of non-structural protein nsP3 remain elusive. CHIKV nsP3 modulates the mammalian stress response by preventing stress granule formation through sequestration of G3BP. In mosquitoes, nsP3 is a determinant of vector specificity, but its functional interaction with mosquito proteins is unclear. Methods In this research we studied the domains required for localization of CHIKV nsP3 in insect cells and demonstrated its molecular interaction with Rasputin (Rin), the mosquito homologue of G3BP. The biological involvement of Rin in CHIKV infection was investigated in live Ae. albopictus mosquitoes. Results In insect cells, nsP3 localized as cytoplasmic granules, which was dependent on the central domain and the C-terminal variable region but independent of the N-terminal macrodomain. Ae. albopictus Rin displayed a diffuse, cytoplasmic localization, but was effectively sequestered into nsP3-granules upon nsP3 co-expression. Site-directed mutagenesis showed that the Rin-nsP3 interaction involved the NTF2-like domain of Rin and two conserved TFGD repeats in the C-terminal variable domain of nsP3. Although in vitro silencing of Rin did not impact nsP3 localization or CHIKV replication in cell culture, Rin depletion in vivo significantly decreased the CHIKV infection rate and transmissibility in Ae.albopictus. Conclusions We identified the nsP3 hypervariable C-terminal domain as a critical factor for granular localization and sequestration of mosquito Rin. Our study offers novel insight into a conserved virus-mosquito interaction at the molecular level, and reveals a strong proviral role for G3BP homologue Rin in live mosquitoes, making the nsP3-Rin interaction a putative target to interfere with the CHIKV transmission cycle.
机译:背景基孔肯雅热病毒(CHIKV)是一种由伊蚊种蚊子传播的致关节炎的甲型病毒(Togaviridae家族)。 CHIKV于2004年重新出现,在世界范围内爆发了多次疫情,最近又到达美洲,在此地区,该病已在迅速蔓延的流行中感染了超过100万人。一般而言,α病毒复制是众所周知的,但非结构蛋白nsP3的特定功能仍然难以捉摸。 CHIKV nsP3通过隔离G3BP防止应激颗粒形成,从而调节哺乳动物的应激反应。在蚊子中,nsP3是载体特异性的决定因素,但它与蚊子蛋白的功能相互作用尚不清楚。方法在这项研究中,我们研究了CHIKV nsP3在昆虫细胞中定位所需的结构域,并证明了其与Rasputin(Rin)(G3BP的蚊子同源物)的分子相互作用。在活的Ae中调查了Rin在CHIKV感染中的生物学参与。白带蚊子。结果在昆虫细胞中,nsP3定位为细胞质颗粒,其依赖于中央结构域和C-末端可变区,但不依赖于N-末端大结构域。 e白蛋白Rin表现出弥漫性的细胞质定位,但在nsP3共表达时被有效地隔离到nsP3颗粒中。定点诱变显示,Rin-nsP3相互作用涉及Rin的NTF2样结构域和nsP3的C端可变域中的两个保守的TFGD重复序列。尽管Rin的体外沉默不影响细胞培养物中nsP3的定位或CHIKV复制,但是体内Rin的消耗显着降低了白纹伊蚊的CHIKV感染率和传播能力。结论我们确定nsP3高变C端结构域是Rin颗粒定位和隔离的关键因素。我们的研究提供了在分子水平上保守的病毒-蚊子相互作用的新颖见解,并揭示了G3BP同系物Rin在活蚊子中的强大的前病毒作用,使nsP3-Rin相互作用成为干扰CHIKV传播周期的推定目标。

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