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1.
Chinese Journal of Experimental and Clinical Virology ; (6): 21-24, 2019.
Article in Chinese | WPRIM | ID: wpr-804608

ABSTRACT

Objective@#To study the intracellular location and autophagosome production of rhinovirus 16 2B protein using miniSOG labeling technique.@*Methods@#2B was fused with miniSOG and flag tags to construct pcDNA3.1-2B-miniSOG-flag plasmid, which was used to transfect HEK293 cells, LC3 protein was detected by western blot. The transfected cells were fixed, stained with DAB through the photooxidation activity of miniSOG, and used to prepare ultrathin sections. Localization of 2B-miniSOG protein in cells and ultrastructural changes of cells were observed under electron microscope.@*Results@#2B-miniSOG protein glows green under a fluorescence microscopy. Green flourescence coold be observed in the cells expressing 2B-miniSOG protein.LC-II protein increased in the cells transfected with pcDNA3.1-2B-miniSOG-flag. Under electron microscopy it was observed that 2B-miniSOG protein was located in the mitochondria, and a large number of vesicular structures appeared in the cytoplasm. Both autophagosomes and autophagic lysosomes can be observed.@*Conclusions@#Non-structural protein 2B of HRV16 can induce autophagy.

2.
Chinese Journal of Experimental and Clinical Virology ; (6): 8-12, 2017.
Article in Chinese | WPRIM | ID: wpr-807973

ABSTRACT

Objective@#To establish a method of correlative light and electron microscopy (CLEM) to study the intracellular location of adenovirus protein IX.@*Methods@#MiniSOG (mini singlet oxygen generator) is a recently-invented genetically-encoded tag for CLEM. MiniSOG-fused adenovirus IX gene (IXSOG) was cloned by PCR, and inserted into pcDNA3 plasmid to form pTPL-IXSOG, which was used to transfect 293 cells. IXSOG expressing cells could be distinguished under fluorescence microscope due to the emission of green fluorescence of miniSOG. The transfected cells were fixed in 2.5% glutaraldehyde in situ, stained with diaminobenzidine(DAB) through the photooxidation activity of miniSOG, and used to prepare ultrathin sections. Intracellular location of IXSOG was studied by observing the sections under transmission electron microscope.@*Results@#Eukaryotic expression plasmid carrying IXSOG fusion gene was constructed. IXSOG expressing cells were selected for DAB photooxidation and preparation of ultrathin sections. IXSOG fusion mainly formed punctate aggregations or inclusions in the nucleus.@*Conclusions@#The correlative light and electron microscopy method based on miniSOG was successfully established, and it could be used to study the intracellular localization of viral proteins.

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