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Lateral Distribution of the Transmembrane Domain of Influenza Virus Hemagglutinin Revealed by Time-resolved Fluorescence Imaging

机译:时间分辨荧光成像显示流感病毒血凝素跨膜结构域的横向分布。

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摘要

Influenza virus hemagglutinin (HA) has been suggested to be enriched in liquid-ordered lipid domains named rafts, which represent an important step in virus assembly. We employed Förster resonance energy transfer (FRET) via fluorescence lifetime imaging microscopy to study the interaction of the cytoplasmic and transmembrane domain (TMD) of HA with agly co sylphos pha tidyl ino si tol (GPI)-anchored peptide, an established marker for rafts in the exoplasmic leaflet of living mammalian plasma membranes. Cyan fluorescent protein (CFP) was fused to GPI, whereas the HA sequence was tagged with yellow fluorescent protein (YFP) on its exoplasmic site (TMD-HA-YFP), avoiding any interference of fluorescent proteins with the proposed role of the cytoplasmic domain in lateral organization of HA. Constructs were expressed in Chinese hamster ovary cells (CHO-K1) for which cholesterol-sensitive lipid nanodomains and their dimension in the plasma membrane have been described (Sharma, P., Varma, R., Sarasij, R. C., Ira, Gousset, K., Krishnamoorthy, G., Rao, M., and Mayor, S. (2004) Cell 116, 577–589). Upon transfection in CHO-K1 cells, TMD-HA-YFP is partially expressed as a dimer. Only dimers are targeted to the plasma membrane. Clustering of TMD-HA-YFP with GPI-CFP was observed and shown to be reduced upon cholesterol depletion, a treatment known to disrupt rafts. No indication for association of TMD-HA-YFP with GPI-CFP was found when palmitoylation, an important determinant of raft targeting, was suppressed. Clustering of TMD-HA-YFP and GPI-CFP was also observed in purified plasma membrane suspensions by homoFRET. We concluded that the pal mit oy lated TMD-HA alone is sufficient to recruit HA to cholesterol-sensitive nanodomains. The corresponding construct of the spike protein E2 of Semliki Forest virus did not partition preferentially in such domains.
机译:有人建议将流感病毒血凝素(HA)富集在称为筏的液体有序脂质域中,这是病毒组装中的重要步骤。我们通过荧光寿命成像显微镜采用了Förster共振能量转移(FRET),研究了HA与胞质磷脂酰磷脂酰肌醇(GPI)锚定肽(一种公认的筏标记)的胞质和跨膜结构域(TMD)的相互作用。在活的哺乳动物质膜的胞质小叶中。将青色荧光蛋白(CFP)与GPI融合,而HA序列在其胞外位点(TMD-HA-YFP)上用黄色荧光蛋白(YFP)标记,从而避免了荧光蛋白干扰细胞质域的作用在医管局的横向组织中。在中国仓鼠卵巢细胞(CHO-K1)中表达了构建体,其中描述了胆固醇敏感脂质纳米域及其在质膜中的大小(Sharma,P.,Varma,R.,Sarasij,RC,Ira,Gousset,K ,Krishnamoorthy,G.,Rao,M。和Mayor,S。(2004)Cell 116,577-589)。在CHO-K1细胞中转染后,TMD-HA-YFP部分表达为二聚体。仅二聚体靶向质膜。观察到TMD-HA-YFP与GPI-CFP的聚集,并且显示胆固醇减少会降低胆固醇,胆固醇是已知的一种治疗方法,可破坏木筏。当棕榈酰化(筏靶向的重要决定因素)被抑制时,没有发现TMD-HA-YFP与GPI-CFP相关的迹象。通过homoFRET在纯化的质膜悬浮液中也观察到了TMD-HA-YFP和GPI-CFP的聚集。我们得出的结论是,单独的棕榈酸酯化TMD-HA足以将HA募集到胆固醇敏感的纳米域。 Semliki Forest病毒的刺突蛋白E2的相应构建体未在此类域中优先分配。

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