The biophysical and biochemical properties of Penicillium cyaneo-fulvum virus (Pc-fV) and Penicillium chrysogenum virus (PcV) have been compared. In sucrose density gradient sedimentation, purified virus preparations gave one major component, L, and three minor components E1, E2 and H with sedimentation coefficients of 145S, 80S, 102S and 172S respectively in each case. E1, E2 were shown to be empty particles. Pc-fV L particles contained only double-stranded RNA, which separated in polyacrylamide gel electrophoresis into four components with mol. wt. 2-21 X 10(6), 2-08 X 10(6), 1-98 X 10(6) and 1-93 X 10(6). PcV L particles gave three double-stranded RNA components, which were indistinguishable in polyacrylamide gel electrophoresis from the larger three RNA components of Pc-fV. In both viruses each RNA component was separately encapsidated. In both viruses H particles gave rise to the same double-stranded RNA components as their L particles, but contained, in addition, small amounts of single-stranded RNA. Pc-fV and PcV have been shown to consist of isometric particles of the same size and to be serologically related, and the amino acid compositions of their capsid polypeptides were found to be very similar. The capsid polypeptides of the two viruses were examined by SDS-polyacrylamide gel electrophoresis. In each case E2, L and H particles gave one major polypeptide gamma1, with mol. wt. 130000, whereas E1 particles contained one major polypeptide gamma2 with mol. wt. 115000. The mol. wt. of L particles, determined from sedimentation and diffusion coefficients, was 9-8 X 10(6) for both Pc-fV and PcV. The capsid of the L particles of each virus was estimated to contain 60 molecules of polypeptide gamma1.
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http://dx.doi.org/10.1099/0022-1317-34-1-145 | DOI Listing |
Soft Matter
January 2025
Department of Mechanical and Aerospace Engineering, Princeton University, Princeton, NJ 08544, USA.
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View Article and Find Full Text PDFJ Virol
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Department of Viroscience, Erasmus Medical Center, Rotterdam, the Netherlands.
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Development and Utilization Key Laboratory of Northeast Plant Materials, School of Traditional Chinese Meteria Medica, Shenyang Pharmaceutical University, Shenyang, 110016, China.
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Department of Environmental Sciences, University of California, Riverside, California 92521, United States.
E-cigarette emissions, which contain a variety of hazardous compounds, contribute significantly to indoor air pollution and raise concerns about secondhand exposure to vaping byproducts. Compared to fresh vape emissions, our understanding of chemically aged products in indoor environments remains incomplete. Terpenes are commonly used as flavoring agents in e-liquids, which have the ability to react with the dominant indoor oxidant ozone (O) to produce reactive oxygenated byproducts and result in new particle formation.
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Environment and Plant Protection Institute, Chinese Academy of Tropical Agricultural Science, Haikou, 571101, China.
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