The N-terminal portion of the large envelope protein of the human hepatitis B virus (HBV), the preS1 domain, plays a fundamental role in cell attachment and infectivity. Recent investigations have suggested that myristylation of preS1 Gly 2 residue is essential for viral infectivity, but the importance of this post-translational modification on HBV-receptor interaction has not been elucidated completely. In this study we produced, using stepwise solid-phase chemical synthesis, the entire preS1[1-119] domain (adw2 subtype), and compared its receptor binding activity with the myristylated form, myristyl-preS1[2-119] in order to define the importance of fatty acid modification. Both synthetic proteins were fully characterized in terms of structural identity using TOF-MALDI mass spectrometry and analysis of tryptic fragments. Circular dichroism measurements indicated a low content of ordered structure in the preS1 protein, while the propensity of the myristylated derivative to assume a conformationally defined structure was more evident. HBV-receptor binding assays performed with plasma membranes preparations from the hepatocyte carcinoma cell line HepG2 clearly showed that the preS1[1-119] domain recognizes the HBV receptor, and confirmed that binding is occurring through the 21-47 region. The myristylated derivative recognized HBV receptor preparations with higher affinity than the preS1 domain, suggesting that the conformational transitions induced in the preS1 moiety by fatty acid post-translational modification are important for efficient attachment of viral particles to HBV receptors.

N-terminal myristylation of HBV preS1 domain enhances receptor recognition / S., De Falco; M., Ruvo; A., Verdoliva; A., Scarallo; Raimondo, Domenico; A., Raucci; G., Fassina. - In: JOURNAL OF PEPTIDE RESEARCH. - ISSN 1397-002X. - STAMPA. - 57:5(2001), pp. 390-400. [10.1034/j.1399-3011.2001.00848.x]

N-terminal myristylation of HBV preS1 domain enhances receptor recognition

RAIMONDO, Domenico;
2001

Abstract

The N-terminal portion of the large envelope protein of the human hepatitis B virus (HBV), the preS1 domain, plays a fundamental role in cell attachment and infectivity. Recent investigations have suggested that myristylation of preS1 Gly 2 residue is essential for viral infectivity, but the importance of this post-translational modification on HBV-receptor interaction has not been elucidated completely. In this study we produced, using stepwise solid-phase chemical synthesis, the entire preS1[1-119] domain (adw2 subtype), and compared its receptor binding activity with the myristylated form, myristyl-preS1[2-119] in order to define the importance of fatty acid modification. Both synthetic proteins were fully characterized in terms of structural identity using TOF-MALDI mass spectrometry and analysis of tryptic fragments. Circular dichroism measurements indicated a low content of ordered structure in the preS1 protein, while the propensity of the myristylated derivative to assume a conformationally defined structure was more evident. HBV-receptor binding assays performed with plasma membranes preparations from the hepatocyte carcinoma cell line HepG2 clearly showed that the preS1[1-119] domain recognizes the HBV receptor, and confirmed that binding is occurring through the 21-47 region. The myristylated derivative recognized HBV receptor preparations with higher affinity than the preS1 domain, suggesting that the conformational transitions induced in the preS1 moiety by fatty acid post-translational modification are important for efficient attachment of viral particles to HBV receptors.
2001
binding; cell; hepatitis b virus; hepatitis-b virus; infectivity; large envelope protein; myristic acid; myristylation; plasma-membranes; pre-s1 domain; pres1; receptor binding; site; transmembrane topology
01 Pubblicazione su rivista::01a Articolo in rivista
N-terminal myristylation of HBV preS1 domain enhances receptor recognition / S., De Falco; M., Ruvo; A., Verdoliva; A., Scarallo; Raimondo, Domenico; A., Raucci; G., Fassina. - In: JOURNAL OF PEPTIDE RESEARCH. - ISSN 1397-002X. - STAMPA. - 57:5(2001), pp. 390-400. [10.1034/j.1399-3011.2001.00848.x]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/396033
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