We performed genetic and phenic analyses to evaluate nucleotide and amino-acid sequences of the amino-terminus of the E1 protein of HCV genotype 1b (extracted from databank) and 4a (characterised in this study). The non-synonymous (ka) mutation analysis demonstrated that the genome of genotype 1b was not saturated by variations, with a rate of transition/transversion (s/v) of 1.5, which is similar to the expected ratio (i.e., 2.0). The s/v ratio in genotype 4a isolates was lower (0.98), indicating saturation due long-term variability. Moreover, the genotype 1b sequences showed a higher number of ka mutations (s+v) (mean of 2.8 per sequence) than genotype 4a (mean of 1.5). The introduction of ka mutations resulted in a higher degree of amino acid variability in genotype 4a. In the genome of genotype 1b, each nucleotide mutation introduced new amino acids, with a Granthan distance of 3.35-42.5, whereas for genotype 4a the distances ranged from 48.8 to 102.1. The phenic analysis also indicated different and complex patterns of amino-acid substitution. Finally, diverse isoelectric points and hydrophobicity were predicted for the two genotypes, with a higher acidity for genotype 4a E1 proteins.

Argentini, C., Dettori, S., Villano, U., Angelico, M., Rapicetta, M. (2003). Different levels of variability in subtypes 1b and 4a of hepatitis C viruses. JOURNAL OF BIOLOGICAL REGULATORS & HOMEOSTATIC AGENTS, 17(2), 147-152.

Different levels of variability in subtypes 1b and 4a of hepatitis C viruses

ANGELICO, MARIO;
2003-01-01

Abstract

We performed genetic and phenic analyses to evaluate nucleotide and amino-acid sequences of the amino-terminus of the E1 protein of HCV genotype 1b (extracted from databank) and 4a (characterised in this study). The non-synonymous (ka) mutation analysis demonstrated that the genome of genotype 1b was not saturated by variations, with a rate of transition/transversion (s/v) of 1.5, which is similar to the expected ratio (i.e., 2.0). The s/v ratio in genotype 4a isolates was lower (0.98), indicating saturation due long-term variability. Moreover, the genotype 1b sequences showed a higher number of ka mutations (s+v) (mean of 2.8 per sequence) than genotype 4a (mean of 1.5). The introduction of ka mutations resulted in a higher degree of amino acid variability in genotype 4a. In the genome of genotype 1b, each nucleotide mutation introduced new amino acids, with a Granthan distance of 3.35-42.5, whereas for genotype 4a the distances ranged from 48.8 to 102.1. The phenic analysis also indicated different and complex patterns of amino-acid substitution. Finally, diverse isoelectric points and hydrophobicity were predicted for the two genotypes, with a higher acidity for genotype 4a E1 proteins.
2003
Pubblicato
Rilevanza internazionale
Articolo
Sì, ma tipo non specificato
Settore MED/12 - GASTROENTEROLOGIA
English
Con Impact Factor ISI
Codon; Genetic Variation; Hydrophobic and Hydrophilic Interactions; Amino Acids; Hepacivirus; DNA Mutational Analysis; Humans; Isoelectric Point; Viral Envelope Proteins; Selection, Genetic; RNA, Viral; Genotype; DNA, Complementary; Databases, Nucleic Acid; Mutation; Amino Acid Substitution
Argentini, C., Dettori, S., Villano, U., Angelico, M., Rapicetta, M. (2003). Different levels of variability in subtypes 1b and 4a of hepatitis C viruses. JOURNAL OF BIOLOGICAL REGULATORS & HOMEOSTATIC AGENTS, 17(2), 147-152.
Argentini, C; Dettori, S; Villano, U; Angelico, M; Rapicetta, M
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/66574
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