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Structural basis for penetration of the glycan shield of hepatitis C virus E2 glycoprotein by a broadly neutralizing human antibody.

J Biol Chem. 2015; 
Li Y, Pierce BG, Wang Q, Keck ZY, Fuerst TR, Foung SK, Mariuzza RA.
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Peptide Synthesis … 1 To whom correspondence should be addressed: University of Maryland Institute for Bioscience and Biotechnology Research, 9600 … For crystallization of the HC33.1-E2 412–423 complex, HC33.1 scFv (10 mg/ml) was mixed with E2 412–423 peptide (GenScript) in a 1:5 molar … Get A Quote

摘要

Hepatitis C virus (HCV) is a major cause of liver cirrhosis and hepatocellular carcinoma. A challenge for HCV vaccine development is to identify conserved epitopes able to elicit protective antibodies against this highly diverse virus. Glycan shielding is a mechanism by which HCV masks such epitopes on its E2 envelope glycoprotein. Antibodies to the E2 region comprising residues 412-423 (E2(412-423)) have broadly neutralizing activities. However, an adaptive mutation in this linear epitope, N417S, is associated with a glycosylation shift from Asn-417 to Asn-415 that enables HCV to escape neutralization by mAbs such as HCV1 and AP33. By contrast, the human mAb HC33.1 can neutralize virus bearing the N417S mutati... More

关键词

Antibody; Crystal Structure; Glycosylation; Hepatitis C Virus (HCV); Neutralization; Vaccine