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Potent inhibition of HIV-1 by TRIM5-cyclophilin fusion proteins engineered from human components
Martha R. Neagu, Patrick Ziegler, Thomas Pertel, Caterina Strambio-De-Castillia, Christian Grütter, Gladys Martinetti, Luca Mazzucchelli, Markus Grütter, Markus G. Manz, Jeremy Luban
Martha R. Neagu, Patrick Ziegler, Thomas Pertel, Caterina Strambio-De-Castillia, Christian Grütter, Gladys Martinetti, Luca Mazzucchelli, Markus Grütter, Markus G. Manz, Jeremy Luban
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Research Article AIDS/HIV

Potent inhibition of HIV-1 by TRIM5-cyclophilin fusion proteins engineered from human components

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Abstract

New World monkeys of the genus Aotus synthesize a fusion protein (AoT5Cyp) containing tripartite motif-containing 5 (TRIM5) and cyclophilin A (CypA) that potently blocks HIV-1 infection. We attempted to generate a human HIV-1 inhibitor modeled after AoT5Cyp, by fusing human CypA to human TRIM5 (hT5Cyp). Of 13 constructs, 3 showed substantial HIV-1–inhibitory activity when expressed in human cell lines. This activity required capsid binding by CypA and correlated with CypA linkage to the TRIM5a capsid-specificity determinant and the ability to form cytoplasmic bodies. CXCR4- and CCR5-tropic HIV-1 clones and primary isolates were inhibited from infecting multiple human macrophage and T cell lines and primary cells by hT5Cyp, as were HIV-2ROD, SIVAGMtan, FIVPET, and a circulating HIV-1 isolate previously reported to be AoT5Cyp resistant. The anti–HIV-1 activity of hT5Cyp was surprisingly more effective than that of the well-characterized rhesus TRIM5α, especially in T cells. hT5Cyp also blocked HIV-1 infection of primary CD4+ T cells and macrophages and conferred a survival advantage to these cells without disrupting their function. Extensive attempts to elicit HIV-1 resistance to hT5Cyp were unsuccessful. Finally, Rag2–/–γc–/– mice were engrafted with human CD4+ T cells that had been transduced by optimized lentiviral vectors bearing hT5Cyp. Upon challenge with HIV-1, these mice showed decreased viremia and productive infection in lymphoid organs and preserved numbers of human CD4+ T cells. We conclude that hT5Cyp is an extraordinarily robust inhibitor of HIV-1 replication and a promising anti–HIV-1 gene therapy candidate.

Authors

Martha R. Neagu, Patrick Ziegler, Thomas Pertel, Caterina Strambio-De-Castillia, Christian Grütter, Gladys Martinetti, Luca Mazzucchelli, Markus Grütter, Markus G. Manz, Jeremy Luban

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Figure 2

HIV-1 restriction activity correlates with CypA fusion to the TRIM5α specificity determinant and the ability to form cytoplasmic bodies.

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HIV-1 restriction activity correlates with CypA fusion to the TRIM5α spe...
(A) Expression of hT5Cyp fusion proteins. FLAG-hT5Cyp fusion proteins synthesized in 293T cells were immunoprecipitated with anti-FLAG antibodies and immunoblotted with anti-CypA antibodies. (B) HIV-1 CA binding activity of hT5Cyp fusion proteins. FLAG-hT5Cyp and GST-CA fusion proteins were co-expressed in 293T cells, pulled out on glutathione-sepharose beads in the presence or absence of 20 μM CsA, and immunoblotted with anti-CypA and anti–p24-CA antibodies. (C) Model of the PRYSPRY domain of hTRIM5α based on crystal structures of PRYSPRY, GUSTAVUS, and TRIM21. Two ribbon representations showing the position of hCypA fusions (spheres) to the hTRIM5α PRYSPRY domain. The grey transparent ribbon indicates regions of the model that would be replaced by CypA in hT5-S331-Cyp. (D) Restrictive T5Cyp fusion proteins formed discrete puncta in the cytoplasm. Indirect immunofluorescence images of CRFK cells stably expressing the indicated T5Cyp fusions. Fixed samples were stained with anti-TRIM5 antibody (green) and anti-tubulin antibody (red), followed by counterstain with DAPI (blue) to visualize the nuclear DNA. For each color, an individual stack of twenty 0.35-μm optical sections was acquired and subjected to maximum intensity projection along the optical axis. Images represent 3-color overlays. Scale bar: 5 μm. All panels are color coded for restriction phenotype (red, restrictive; orange, variably restrictive; green, permissive).

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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