首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Synchrotron Infrared and Deep UV Fluorescent Microspectroscopy Study of PB1-F2 β-Aggregated Structures in Influenza A Virus-infected Cells
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Synchrotron Infrared and Deep UV Fluorescent Microspectroscopy Study of PB1-F2 β-Aggregated Structures in Influenza A Virus-infected Cells

机译:甲型流感病毒感染细胞中PB1-F2β聚集结构的同步辐射红外和深紫外荧光光谱研究

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摘要

PB1-F2 is a virulence factor of influenza A virus (IAV) whose functions remain misunderstood. The different roles of PB1-F2 may be linked to its structural polymorphism and to its propensity to assemble into oligomers and amyloid fibers in the vicinity of the membrane of IAV-infected cells. Here, we monitored the impact of PB1-F2 on the biochemical composition and protein structures of human epithelial pulmonary cells (A549) and monocytic cells (U937) upon IAV infection using synchrotron Fourier-transform infrared (FTIR) and deep UV (DUV) microscopies at the single-cell level. Cells were infected with a wild-type IAV and its PB1-F2 knock-out mutant for analyses at different times post-infection. IR spectra were recorded in each condition and processed to evaluate the change in the component band of the spectra corresponding to the amide I (secondary structure) and the CH stretching region (membrane). The IR spectra analysis revealed that expression of PB1-F2 in U937 cells, but not in A549 cells, results in the presence of a specific β-aggregate signature. Furthermore, the lipid membrane composition of U937 cells expressing PB1-F2 was also altered in a cell type-dependent manner. Using DUV microscopy and taking advantage of the high content of tryptophan residues in the sequence of PB1-F2 (5/90 aa), we showed that the increase of the autofluorescent signal recorded in monocytic cells could be correlated with the IR detection of β-aggregates. Altogether, our results constitute an important step forward in the understanding of the cell type-dependent function of PB1-F2.
机译:PB1-F2是一种甲型流感病毒(IAV)的毒力因子,其功能仍被误解。 PB1-F2的不同作用可能与其结构多态性及其在IAV感染细胞膜附近组装成寡聚物和淀粉样蛋白纤维的倾向有关。在这里,我们使用同步加速器傅立叶变换红外光谱(FTIR)和深紫外(DUV)显微镜观察了PB1-F2对IAV感染后人上皮肺细胞(A549)和单核细胞(U937)的生化组成和蛋白质结构的影响在单细胞级别。用野生型IAV及其PB1-F2敲除突变体感染细胞,以便在感染后的不同时间进行分析。在每种条件下记录红外光谱并进行处理,以评估对应于酰胺I(二级结构)和CH拉伸区(膜)的光谱组分带的变化。红外光谱分析表明,PB937-F2在U937细胞中而不在A549细胞中表达,导致存在特定的β聚集体特征。此外,表达PB1-F2的U937细胞的脂质膜组成也以细胞类型依赖性方式改变。使用DUV显微镜并利用PB1-F2(5/90 aa)序列中色氨酸残基的高含量,我们发现单核细胞中记录的自发荧光信号的增加可能与β-聚集体。总之,我们的结果构成了对PB1-F2依赖细胞类型的功能的理解的重要一步。

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