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Assessing the Innate Sensing of HIV-1 Infected CD4+ T Cells by Plasmacytoid Dendritic Cells Using an Ex vivo Co-culture System.
Published on: September 1, 2015
The HIV-1 gp120 envelope protein has the intrinsic capacity to stimulate monokine secretion
K A Clouse1, L M Cosentino, K A Weih
1Center for Biologics Evaluation and Research, Food and Drug Administration, Bethesda, MD 20892.
Insights
HIV glycoprotein 120 (gp120) from natural sources and some recombinant forms stimulate monocyte cytokine release. However, certain recombinant gp120 proteins fail to trigger this response, suggesting structural factors are key.
Area of Science:
- Immunology
- Virology
- Biochemistry
Background:
- Previous studies on HIV glycoprotein 120 (gp120) and monokine secretion yielded conflicting results.
- Variations in recombinant gp120 protein preparations may explain these discrepancies.
Purpose of the Study:
- To investigate whether differences in recombinant gp120 proteins affect their ability to stimulate monokine production.
- To identify factors influencing gp120-mediated monocyte activation.
Main Methods:
- Comparison of monokine secretion (TNF-alpha, IL-1 beta, IL-6, GM-CSF) induced by natural gp120, adenovirus-derived rgp120, and CHO cell-derived gp120.
- Assessment of heat inactivation and blocking effects using soluble CD4 and excess fusion protein.
- Evaluation of baculovirus-expressed gp120 and CHO cell-derived fusion protein activity.
Main Results:
- Natural gp120 stimulated monocytes to release TNF-alpha, IL-1 beta, IL-6, and GM-CSF, an effect blocked by soluble CD4.
- Full-length rgp120 from adenovirus vectors and CHO cells mimicked this stimulatory effect.
- Baculovirus-expressed gp120 and a previously tested CHO cell-derived fusion protein failed to stimulate monokine production, despite CD4 binding capability.
Conclusions:
- HIV gp120 binding to CD4 on monocytes may not be sufficient for triggering monokine secretion.
- Primary protein structure and post-translational modifications of gp120 are critical determinants of its ability to stimulate monokine production.
Abstract:
Results and conclusions concerning the ability of HIV glycoprotein (gp) 120 to stimulate monokine secretion have been equivocal, based on observations using natural gp120 derived from infected human cells and a Chinese hamster ovary (CHO) cell-derived recombinant fusion protein. Current studies were designed to determine whether differences in recombinant gp120 proteins could result in failure to trigger monokine production. We found that natural gp120 could stimulate monocytes to release TNF-alpha, IL-1 beta, IL-6, and granulocyte-macrophage-CSF, and this effect could be blocked with soluble CD4. Full-length rgp120 either expressed from an adenovirus vector and purified from infected human cells, or derived from CHO cells, could function similarly. In contrast, full-length recombinant envelope protein expressed in a baculovirus system and a CHO cell-derived recombinant fusion protein tested previously, consistently failed to stimulate monokine production. The stimulatory capacity of both natural and full-length CHO cell-derived gp120 was eliminated by heating at 100 degrees C, and could be blocked with excess CHO cell-derived gp120 fusion protein. Inasmuch as the baculovirus-expressed gp120 and the CHO cell-derived recombinant fusion protein can bind to CD4, these results suggest that HIV gp120 binding to CD4 on the monocyte surface may of itself be insufficient for stimulation of monokine secretion. Therefore, primary protein structure, as well as posttranslational protein modifications, may determine this activity.
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