Literature DB >> 10201932

In vitro analysis of complement-dependent HIV-1 cell infection using a model system.

P Tacnet-Delorme1, V Boyer, N M Thielens, J F Hernandez, I Bally, R B Sim, C Desgranges, G J Arlaud.   

Abstract

Previous studies based on the use of human serum as a source of C have provided evidence for the C-dependent enhancement of cell infection by HIV-1. The present study was undertaken to distinguish C from other serum factors and to identify the proteins and the mechanisms involved in C-dependent cell infection by HIV-1. The classical C activation pathway was reconstituted from the proteins C1q, C1r, C1s, C4, C2, C3, factor H, and factor I; each were purified to homogeneity. A mixture of these proteins at physiological concentrations was shown to reproduce the ability of normal human serum to enhance the infection of MT2 cells by HIV-1 at low doses of virus. This enhancing effect was abolished when heat-inactivated serum and C2- or C3-depleted serum were used, and was restored upon addition of the corresponding purified proteins. A mixture of two synthetic peptides corresponding to positions 10-15 and 90-97 of human C receptor type 2 (CD21) as well as soluble CD4 both inhibited the C-dependent infection process. These data provide unambiguous evidence that HIV-1 triggers a direct activation of the classical C pathway in vitro and thereby facilitates the infection of MT2 cells at low doses of virus. These findings are consistent with a mechanism involving increased interaction between the virus opsonized by C3b-derived fragment(s) and the CD21 cell receptors and subsequent virus entry through CD4 receptors.

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Year:  1999        PMID: 10201932

Source DB:  PubMed          Journal:  J Immunol        ISSN: 0022-1767            Impact factor:   5.422


  7 in total

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4.  Trimeric reassembly of the globular domain of human C1q.

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6.  Plasma proteomics reveals markers of metabolic stress in HIV infected children with severe acute malnutrition.

Authors:  Gerard Bryan Gonzales; James M Njunge; Bonface M Gichuki; Bijun Wen; Isabel Potani; Wieger Voskuijl; Robert H J Bandsma; James A Berkley
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Review 7.  Complement and its role in protection and pathogenesis of flavivirus infections.

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  7 in total

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