Martin-Fernandez Marisa, Longshaw Samantha V, Kirby Ian, Santis George, Tobin Mark J, Clarke David T, Jones Gareth R
Council for the Central Laboratory of the Research Councils, Daresbury Laboratory, Daresbury, Warrington WA4 4AD, United Kingdom.
Biophys J. 2004 Aug;87(2):1316-27. doi: 10.1529/biophysj.103.035444.
We have used fluorescence resonance energy transfer (FRET) to follow the process of capsid disassembly for adenovirus (Ad) serotype 5 (Ad5) in living CHO-CAR cells. Ad5 were weakly labeled on their capsid proteins with FRET donor and acceptor fluorophores. A progressive decrease in FRET efficiency recorded during Ad5 uptake revealed that the time course of Ad5 capsid disassembly has two sequential protein dissociation rates with half-times of 3 and 60 min. Fluorescence anisotropy measurements of the segmental motions of fluorophores on Ad5 indicate that the first rate is linked to the detachment from the capsid of the protruding, flexible fiber proteins. The second rate was shown to report on the combined dissociation of protein IX, penton base, and hexons, which form the rigid icosahedral capsid shell. Fluorescence lifetime imaging microscopy measurements using a pH-sensitive probe provided information on the pH of the microenvironment of Ad5 particles during intracellular trafficking, and confirmed that the fast fiber dissociation step occurred at the onset of endocytosis. The slower dissociation phase was shown to coincide with the escape of Ad5 from endocytic compartments into the cytosol, and its arrival at the nuclear membrane. These results demonstrate a rapid, quantitative live-cell assay for the investigation of virus-cell interactions and capsid disassembly.
我们利用荧光共振能量转移(FRET)来追踪5型腺病毒(Ad5)衣壳在活的CHO - CAR细胞中的解离过程。用FRET供体和受体荧光团对Ad5衣壳蛋白进行弱标记。在Ad5摄取过程中记录到的FRET效率逐渐降低,表明Ad5衣壳解离的时间进程有两个连续的蛋白质解离速率,半衰期分别为3分钟和60分钟。对Ad5上荧光团的片段运动进行荧光各向异性测量表明,第一个速率与突出的柔性纤维蛋白从衣壳上的脱离有关。第二个速率显示反映了构成刚性二十面体衣壳壳的蛋白IX、五聚体基座和六邻体的联合解离。使用pH敏感探针的荧光寿命成像显微镜测量提供了Ad5颗粒在细胞内运输过程中微环境pH值的信息,并证实快速的纤维解离步骤发生在内吞作用开始时。较慢的解离阶段显示与Ad5从内吞小室逃逸到细胞质中以及到达核膜的过程一致。这些结果证明了一种用于研究病毒 - 细胞相互作用和衣壳解离的快速、定量的活细胞检测方法。