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- W2046649473 endingPage "9249" @default.
- W2046649473 startingPage "9233" @default.
- W2046649473 abstract "ABSTRACT In natural infection, antibodies interact with HIV-1 primarily through nonfunctional forms of envelope glycoproteins (Env), including uncleaved (UNC) gp160 and gp41 stumps. These antigens are important to fully characterize, as they may be decoys that promote nonneutralizing responses and may also be targets for nonneutralizing effector responses. In this study, we compared the antigenic properties of Env expressed in situ on pseudovirion virus-like particle (VLP) surfaces and soluble gp120 using harmonized enzyme-linked immunosorbent assays (ELISAs) and a panel of 51 monoclonal antibodies (MAbs). Only 32 of 46 soluble gp120-reactive MAbs recognized the primary UNC gp160 antigen of VLPs. Indeed, many epitopes were poorly exposed (C1, V2, C1-C4, C4, C4-V3, CD4 induced [CD4i], and PGT group 3) or obscured (C2, C5, and C1-C5) on VLPs. In further studies, VLP Env exhibited an increased degree of inter-MAb competition, the epicenter of which was the base of the V3 loop, where PGT, 2G12, V3, and CD4 binding site specificities competed. UNC gp160 also underwent more drastic soluble CD4 (sCD4)-induced conformational changes than soluble gp120, exposing CD4i, C1-C4, and V2 epitopes. A greater propensity of UNC gp160 to undergo conformational changes was also suggested by the induction of CD4i MAb binding to VLPs by a V3 MAb as well as by soluble CD4. The same effect was not observed for soluble gp120. Taken together, our data suggest that membrane-expressed UNC gp160 exists in a less “triggered” conformational state than soluble gp120 and that MAb binding to UNC gp160 tends to have greater conformational consequences." @default.
- W2046649473 created "2016-06-24" @default.
- W2046649473 creator A5023994515 @default.
- W2046649473 creator A5027151578 @default.
- W2046649473 creator A5036810091 @default.
- W2046649473 creator A5067275151 @default.
- W2046649473 creator A5069640061 @default.
- W2046649473 date "2013-08-15" @default.
- W2046649473 modified "2023-09-23" @default.
- W2046649473 title "Topological Analysis of HIV-1 Glycoproteins Expressed <i>In Situ</i> on Virus Surfaces Reveals Tighter Packing but Greater Conformational Flexibility than for Soluble gp120" @default.
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