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Epigenetic silencing of CD4 expression in nonpathogenic SIV infection in African green monkeys
Joseph C. Mudd, Stephen Lai, Sanjana Shah, Andrew Rahmberg, Jacob K. Flynn, Carly E. Starke, Molly R. Perkins, Amy Ransier, Sam Darko, Daniel C. Douek, Vanessa M. Hirsch, Mark Cameron, Jason M. Brenchley
Joseph C. Mudd, Stephen Lai, Sanjana Shah, Andrew Rahmberg, Jacob K. Flynn, Carly E. Starke, Molly R. Perkins, Amy Ransier, Sam Darko, Daniel C. Douek, Vanessa M. Hirsch, Mark Cameron, Jason M. Brenchley
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Research Article AIDS/HIV Immunology

Epigenetic silencing of CD4 expression in nonpathogenic SIV infection in African green monkeys

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Abstract

African green monkeys (AGMs) are natural hosts of SIV that postthymically downregulate CD4 to maintain a large population of CD4–CD8aa+ virus-resistant cells with Th functionality, which can result in AGMs becoming apparently cured of SIVagm infection. To understand the mechanisms of this process, we performed genome-wide transcriptional analysis on T cells induced to downregulate CD4 in vitro from AGMs and closely related patas monkeys and T cells that maintain CD4 expression from rhesus macaques. In T cells that downregulated CD4, pathway analysis revealed an atypical regulation of the DNA methylation machinery, which was reversible when pharmacologically targeted with 5-aza-2 deoxycytidine. This signature was driven largely by the dioxygenase TET3, which became downregulated with loss of CD4 expression. CpG motifs within the AGM CD4 promoter region became methylated during CD4 downregulation in vitro and were stably imprinted in AGM CD4–CD8aa+ T cells sorted directly ex vivo. These results suggest that AGMs use epigenetic mechanisms to durably silence the CD4 gene. Manipulation of these mechanisms could provide avenues for modulating SIV and HIV-1 entry receptor expression in hosts that become progressively infected with SIV, which could lead to novel therapeutic interventions aimed to reduce HIV viremia in vivo.

Authors

Joseph C. Mudd, Stephen Lai, Sanjana Shah, Andrew Rahmberg, Jacob K. Flynn, Carly E. Starke, Molly R. Perkins, Amy Ransier, Sam Darko, Daniel C. Douek, Vanessa M. Hirsch, Mark Cameron, Jason M. Brenchley

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Figure 2

DNA methylation pathways contribute to CD4 gene silencing in natural hosts.

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DNA methylation pathways contribute to CD4 gene silencing in natural hos...
(A) Top 5 canonical pathways from Ingenuity Pathway Analysis (IPA) of genes unique to natural host cells that are induced to downregulate CD4. P values were calculated by Fisher’s exact test. (B) Heatmaps depicting transcript abundance of genes encoding for proteins involved in DNA methylation of the 3 nonhuman primate species. The scale represents transcript counts normalized by row Z-score. Red and blue coloring represents upregulated and downregulated gene expression, respectively. Comparisons of TET3 gene expression in (C) AGM (n = 6) and (D) rhesus (n = 5) relative to GAPDH assessed by real-time PCR. Statistical significance was calculated by the Mann-Whitney test. (E) Representative flow dot plot and summary data (n= 6) depicting CD4 expression on AGM CD4+ T cells stimulated with anti-CD3/CD2/CD28 microbeads and 25 U/mL IL-2 for 5 days in the presence or absence of 500 nM 5-aza-2 deoxycytidine. (F) Dose response of 5-aza-2 deoxycytidine on CD4 downregulation in AGMs (n= 5). Significance in was determined by the Mann-Whitney test with multiple comparison adjustment by Bonferroni correction.

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