Changes in the Structure of Potato Virus A Virions after Limited in situ Proteolysis According to Tritium Labeling Data and Computer Simulation
Publication type: Journal Article
Publication date: 2023-12-27
scimago Q2
wos Q4
SJR: 0.659
CiteScore: 3.8
Impact factor: 2.2
ISSN: 00062979, 16083040
PubMed ID:
38462457
Biochemistry
General Medicine
Biophysics
Geriatrics and Gerontology
Biochemistry, Genetics and Molecular Biology (miscellaneous)
Abstract
Coat proteins (CP) of the potato virus A virions (PVA) contain partially disordered N-terminal domains, which are necessary for performing vital functions of the virus. Comparative analysis of the structures of coat proteins (CPs) in the intact PVA virions and in the virus particles lacking N-terminal 32 amino acids (PVAΔ32) was carried out in this work based on the tritium planigraphy data. Using atomic-resolution structure of the potato virus Y potyvirus (PVY) protein, which is a homolog of the CP PVA, the available CP surfaces in the PVY virion were calculated and the areas of intersubunit/interhelix contacts were determined. For this purpose, the approach of Lee and Richards [Lee, B., and Richards, F. M. (1971) J. Mol. Biol., 55, 379-400] was used. Comparison of incorporation profiles of the tritium label in the intact and trypsin-degraded PVA∆32 revealed position of the ΔN-peptide shielding the surface domain (a.a. 66-73, 141-146) and the interhelix zone (a.a. 161-175) of the PVA CP. Presence of the channels/cavities was found in the virion, which turned out to be partially permeable to tritium atoms. Upon removal of the ∆N-peptide, decrease in the label incorporation within the virion (a.a. 184-200) was also observed, indicating possible structural transition leading to the virion compactization. Based on the obtained data, we can conclude that part of the surface ∆N-peptide is inserted between the coils of the virion helix thus increasing the helix pitch and providing greater flexibility of the virion, which is important for intercellular transport of the viruses in the plants.
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Ksenofontov A. L. et al. Changes in the Structure of Potato Virus A Virions after Limited in situ Proteolysis According to Tritium Labeling Data and Computer Simulation // Biochemistry (Moscow). 2023. Vol. 88. No. 12-13. pp. 2146-2156.
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Ksenofontov A. L., Baratova L. A., Semenyuk P. I., Fedorova N. V., Badun G. A. Changes in the Structure of Potato Virus A Virions after Limited in situ Proteolysis According to Tritium Labeling Data and Computer Simulation // Biochemistry (Moscow). 2023. Vol. 88. No. 12-13. pp. 2146-2156.
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TY - JOUR
DO - 10.1134/s0006297923120167
UR - https://doi.org/10.1134/s0006297923120167
TI - Changes in the Structure of Potato Virus A Virions after Limited in situ Proteolysis According to Tritium Labeling Data and Computer Simulation
T2 - Biochemistry (Moscow)
AU - Ksenofontov, Alexander L.
AU - Baratova, Ludmila A
AU - Semenyuk, Pavel I.
AU - Fedorova, Natalia V.
AU - Badun, Gennadii A
PY - 2023
DA - 2023/12/27
PB - Pleiades Publishing
SP - 2146-2156
IS - 12-13
VL - 88
PMID - 38462457
SN - 0006-2979
SN - 1608-3040
ER -
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@article{2023_Ksenofontov,
author = {Alexander L. Ksenofontov and Ludmila A Baratova and Pavel I. Semenyuk and Natalia V. Fedorova and Gennadii A Badun},
title = {Changes in the Structure of Potato Virus A Virions after Limited in situ Proteolysis According to Tritium Labeling Data and Computer Simulation},
journal = {Biochemistry (Moscow)},
year = {2023},
volume = {88},
publisher = {Pleiades Publishing},
month = {dec},
url = {https://doi.org/10.1134/s0006297923120167},
number = {12-13},
pages = {2146--2156},
doi = {10.1134/s0006297923120167}
}
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Ksenofontov, Alexander L., et al. “Changes in the Structure of Potato Virus A Virions after Limited in situ Proteolysis According to Tritium Labeling Data and Computer Simulation.” Biochemistry (Moscow), vol. 88, no. 12-13, Dec. 2023, pp. 2146-2156. https://doi.org/10.1134/s0006297923120167.
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