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Deletion of the highly conserved N-glycan at Asn260 of HIV-1 gp120 affects folding and lysosomal degradation of gp120, and results in loss of viral infectivity.
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Structural delineation of a quaternary, cleavage-dependent epitope at the gp41-gp120 interface on intact HIV-1 Env trimers.
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Immunity. 2014; 40(5):669-80.
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Cleavage strongly influences whether soluble HIV-1 envelope glycoprotein trimers adopt a native-like conformation.
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Proc Natl Acad Sci U S A. 2013; 110(45):18256-61.
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A next-generation cleaved, soluble HIV-1 Env trimer, BG505 SOSIP.664 gp140, expresses multiple epitopes for broadly neutralizing but not non-neutralizing antibodies.
Sanders R, Derking R, Cupo A, Julien J, Yasmeen A, de Val N
PLoS Pathog. 2013; 9(9):e1003618.
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Resistance of human immunodeficiency virus type 1 to a third-generation fusion inhibitor requires multiple mutations in gp41 and is accompanied by a dramatic loss of gp41 function.
Eggink D, Bontjer I, Langedijk J, Berkhout B, Sanders R
J Virol. 2011; 85(20):10785-97.
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Stabilized HIV-1 envelope glycoprotein trimers lacking the V1V2 domain, obtained by virus evolution.
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J Biol Chem. 2010; 285(47):36456-70.
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Detailed mechanistic insights into HIV-1 sensitivity to three generations of fusion inhibitors.
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J Biol Chem. 2009; 284(39):26941-50.
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Optimization of human immunodeficiency virus type 1 envelope glycoproteins with V1/V2 deleted, using virus evolution.
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J Virol. 2008; 83(1):368-83.
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Evolution rescues folding of human immunodeficiency virus-1 envelope glycoprotein GP120 lacking a conserved disulfide bond.
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Mol Biol Cell. 2008; 19(11):4707-16.
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Selection of T1249-resistant human immunodeficiency virus type 1 variants.
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J Virol. 2008; 82(13):6678-88.
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The carbohydrate at asparagine 386 on HIV-1 gp120 is not essential for protein folding and function but is involved in immune evasion.
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Retrovirology. 2008; 5:10.
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Second site escape of a T20-dependent HIV-1 variant by a single amino acid change in the CD4 binding region of the envelope glycoprotein.
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Retrovirology. 2006; 3:84.
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