Person: Gaiha, Gaurav
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Publication Surfactant Protein D Modulates HIV Infection of Both T-Cells and Dendritic Cells
(Public Library of Science, 2013) Madsen, Jens; Gaiha, Gaurav; Palaniyar, Nades; Dong, Tao; Mitchell, Daniel A.; Clark, Howard W.Surfactant Protein D (SP-D) is an oligomerized C-type lectin molecule with immunomodulatory properties and involvement in lung surfactant homeostasis in the respiratory tract. SP-D binds to the enveloped viruses, influenza A virus and respiratory syncytial virus and inhibits their replication in vitro and in vivo. SP-D has been shown to bind to HIV via the HIV envelope protein gp120 and inhibit infectivity in vitro. Here we show that SP-D binds to different strains of HIV (BaL and IIIB) and the binding occurs at both pH 7.4 and 5.0 resembling physiological relevant pH values found in the body and the female urogenital tract, respectively. The binding of SP-D to HIV particles and gp120 was inhibited by the presence of several hexoses with mannose found to be the strongest inhibitor. Competition studies showed that soluble CD4 and CVN did not interfere with the interaction between SP-D and gp120. However, soluble recombinant DC-SIGN was shown to inhibit the binding between SP-D and gp120. SP-D agglutinated HIV and gp120 in a calcium dependent manner. SP-D inhibited the infectivity of HIV strains at both pH values of 7.4 and 5.0 in a concentration dependent manner. The inhibition of the infectivity was abolished by the presence of mannose. SP-D enhanced the binding of HIV to immature monocyte derived dendritic cells (iMDDCs) and was also found to enhance HIV capture and transfer to the T-cell like line PM1. These results suggest that SP-D can bind to and inhibit direct infection of T-cells by HIV but also enhance the transfer of infectious HIV particles from DCs to T-cells in vivo.
Publication Identification of CD8+ T Cell Host Factors Involved in HIV Control
(BioMed Central, 2012) Gaiha, Gaurav; McKim, K; Woods, M; Lichterfeld, Mathias; Brass, A; Wallker, BPublication Comprehensive Identification of Host Modulators of HIV-1 Replication using Multiple Orthologous RNAi Reagents
(2016) Zhu, Jian; Davoli, Teresa; Perriera, Jill M.; Chin, Christopher R.; Gaiha, Gaurav; John, Sinu P.; Sigiollot, Frederic D.; Gao, Geng; Xu, Qikai; Qu, Hongjing; Pertel, Thomas; Sims, Jennifer S.; Smith, Jennifer A.; Baker, Richard E.; Maranda, Louise; Ng, Aylwin; Elledge, Stephen; Brass, Abraham L.SUMMARY RNAi screens have implicated hundreds of host proteins as HIV-1 dependency factors (HDFs). While informative, these early studies overlap poorly due to false positives and false negatives. To ameliorate these issues, we combined information from the existing HDF screens together with new screens performed with multiple orthologous RNAi reagents (MORR). In addition to being traditionally validated, the MORR screens and the historical HDF screens were quantitatively integrated by the adaptation of an established analysis program, RIGER, for the collective interpretation of each gene’s phenotypic significance. False positives were addressed by the removal of poorly expressed candidates through gene expression filtering, as well as with GESS, which identifies off-target effects. This workflow produced a quantitatively integrated network of genes that modulate HIV-1 replication. We further investigated the roles of GOLGI49, SEC13, and COG in HIV-1 replication. Collectively, the MORR-RIGER method minimized the caveats of RNAi screening and improved our understanding of HIV-1–host cell interactions.