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Three Mutations in the Stalk Region of Hemagglutinin Affect the pH of Fusion and Pathogenicity of H5N1 Influenza Virus

Previously, an attenuated variant Ku/at was obtained from the highly pathogenic avian influenza virus A/chicken/Kurgan/3/2005 (H5N1) by a reverse selection method aimed at increasing the virus resistance to a proteolytic cleavage and acidic pH values. In the Ku/at, 10 mutations in proteins PB2, PB1,...

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Published in:Molecular biology (New York) 2018-11, Vol.52 (6), p.891-898
Main Authors: Lomakina, N. F., Sadykova, G. K., Timofeeva, T. A., Rudneva, I. A., Boravleva, E. Yu, Ivanov, P. A., Prilipov, A. G., Gambaryan, A. S.
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creator Lomakina, N. F.
Sadykova, G. K.
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Prilipov, A. G.
Gambaryan, A. S.
description Previously, an attenuated variant Ku/at was obtained from the highly pathogenic avian influenza virus A/chicken/Kurgan/3/2005 (H5N1) by a reverse selection method aimed at increasing the virus resistance to a proteolytic cleavage and acidic pH values. In the Ku/at, 10 mutations in proteins PB2, PB1, HA, NA, and NS1 occurred. In comparison with the parental strain, the pH of the conformational transition of the viral glycoprotein hemagglutinin (HA) and virulence for mice and chickens have decreased in an attenuated variant. The purpose of this work is to clarify the role of three mutations in the stalk region of HA: Asp54Asn in HA1 and Val48Ile and Lys131Thr in HA2 (H3 HA numbering). To attain these ends, analogous substitutions were introduced into HA with a deleted polybasic cleavage site (important for pathogenicity) of the recombinant A/Vietnam/1203/04-PR8/CDC-RG (H5N1) virus, and so we created the VN3x-PR variant. Viruses VN3x-PR and Ku/at with the same three mutations, but different proteolytic cleavage sites in HA, as well as the corresponding initial viruses, were tested for pathogenicity in mice and in the erythrocyte hemolysis test. Compared with the parental strains, the virulence of their mutant variants in the case of intranasal infection of BALB/c mice decreased by 4–5 orders of magnitude, and the pH of the conformational transition of HA decreased from 5.70–5.80 to 5.25–5.30, which is typical for low pathogenic natural isolates. Thus, as a result of the study, the attenuating role of these three mutations in HA has been proved, a correlation was established between the pH value of the HA conformational transition and the virulence of H5N1 influenza viruses, and it was shown that the polybasic cleavage site of the H5 HA does not always determine high pathogenicity of the virus.
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The purpose of this work is to clarify the role of three mutations in the stalk region of HA: Asp54Asn in HA1 and Val48Ile and Lys131Thr in HA2 (H3 HA numbering). To attain these ends, analogous substitutions were introduced into HA with a deleted polybasic cleavage site (important for pathogenicity) of the recombinant A/Vietnam/1203/04-PR8/CDC-RG (H5N1) virus, and so we created the VN3x-PR variant. Viruses VN3x-PR and Ku/at with the same three mutations, but different proteolytic cleavage sites in HA, as well as the corresponding initial viruses, were tested for pathogenicity in mice and in the erythrocyte hemolysis test. Compared with the parental strains, the virulence of their mutant variants in the case of intranasal infection of BALB/c mice decreased by 4–5 orders of magnitude, and the pH of the conformational transition of HA decreased from 5.70–5.80 to 5.25–5.30, which is typical for low pathogenic natural isolates. Thus, as a result of the study, the attenuating role of these three mutations in HA has been proved, a correlation was established between the pH value of the HA conformational transition and the virulence of H5N1 influenza viruses, and it was shown that the polybasic cleavage site of the H5 HA does not always determine high pathogenicity of the virus.</description><identifier>ISSN: 0026-8933</identifier><identifier>EISSN: 1608-3245</identifier><identifier>DOI: 10.1134/S0026893318060122</identifier><language>eng</language><publisher>Moscow: Pleiades Publishing</publisher><subject>Avian flu ; Biochemistry ; Biomedical and Life Sciences ; Chickens ; Disease resistance ; Hemagglutinins ; Human Genetics ; Life Sciences ; Mice ; Molecular Cell Biology ; Mutation ; Pathogenicity ; Pathogens ; pH effects ; Poultry ; Proteins ; Proteolysis ; Virulence ; Viruses</subject><ispartof>Molecular biology (New York), 2018-11, Vol.52 (6), p.891-898</ispartof><rights>Pleiades Publishing, Inc. 2018</rights><rights>Molecular Biology is a copyright of Springer, (2018). 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subjects Avian flu
Biochemistry
Biomedical and Life Sciences
Chickens
Disease resistance
Hemagglutinins
Human Genetics
Life Sciences
Mice
Molecular Cell Biology
Mutation
Pathogenicity
Pathogens
pH effects
Poultry
Proteins
Proteolysis
Virulence
Viruses
title Three Mutations in the Stalk Region of Hemagglutinin Affect the pH of Fusion and Pathogenicity of H5N1 Influenza Virus
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