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荧光光漂白恢复测量揭示了辛德毕斯病毒和水疱性口炎病毒包膜化的差异。

Fluorescence photobleaching recovery measurements reveal differences in envelopment of Sindbis and vesicular stomatitis viruses.

作者信息

Johnson D C, Schlesinger M J, Elson E L

出版信息

Cell. 1981 Feb;23(2):423-31. doi: 10.1016/0092-8674(81)90137-9.

Abstract

Fluorescence photobleaching recovery (FPR) measurements of virus glycoproteins on the surfaces of cells infected with vesicular stomatitis virus (VSV) and Sindbis virus showed that the VSV glycoprotein (G) remained mobile throughout the infectious cycle, whereas Sindbis virus glycoproteins (E1, E2) were partially mobile early after infection and immobile at later times when greater amounts of these proteins were on the cell surface. A highly mobile fraction of Sindbis virus glycoproteins was detected throughout the replication cycle of a temperature-sensitive mutant unable to form virus particles. This immobilization of E1 and E2 was the result of increasing surface glycoprotein concentrations and virus budding. Together with other data, which included the detection of E1 and E2 in particles as soon as these proteins were transported to the cell surface, the FPR results suggest that Sindbis virus assembly initiates on intracellular vesicles, where glycoproteins aggregate and bind nucleocapsids. In contrast, our FPR data on VSV support a model previously suggested by others, in which a small fraction of cell-surface G is immobilized into budding sites formed by interactions with virus matrix and nucleoproteins. FPR measurements also provide direct evidence for strong interactions between E1 and E2, as well as between E1 and PE2, the precursor form of E2.

摘要

对感染水疱性口炎病毒(VSV)和辛德毕斯病毒的细胞表面病毒糖蛋白进行的荧光光漂白恢复(FPR)测量表明,VSV糖蛋白(G)在整个感染周期中都保持可移动性,而辛德毕斯病毒糖蛋白(E1、E2)在感染早期部分可移动,在后期当这些蛋白在细胞表面大量存在时则不可移动。在一个无法形成病毒颗粒的温度敏感突变体的整个复制周期中,均检测到了辛德毕斯病毒糖蛋白的一个高度可移动部分。E1和E2的这种固定化是表面糖蛋白浓度增加和病毒出芽的结果。结合其他数据,包括E1和E2一旦转运到细胞表面就可在颗粒中被检测到,FPR结果表明辛德毕斯病毒装配起始于细胞内囊泡,在那里糖蛋白聚集并结合核衣壳。相比之下,我们关于VSV的FPR数据支持其他人先前提出的一个模型,即一小部分细胞表面的G通过与病毒基质和核蛋白的相互作用被固定在形成的出芽位点。FPR测量还为E1与E2之间以及E1与E2的前体形式PE2之间的强相互作用提供了直接证据。

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