Search bioRxiv⌕ Search

bioRxiv · 10.64898/2026.02.18.706531

Host gene expression changes induced by an HIV-1 mutant associated with delayed AIDS progression reveal potential mechanisms

Abstract

HIV-1 viral protein R (Vpr) is a multifunctional protein central to HIV-1 pathogenesis and progression to AIDS. Polymorphisms in vpr have been linked to varying rates of HIV-1 progression. Of note is the HIV-1 Vpr R77Q mutant, associated with delayed progression to AIDS (also as the long-term non-progressor phenotype, or LTNP). We previously demonstrated that the R77Q mutant promotes a non-inflammatory, apoptotic phenotype in CD4+ T cells. To investigate the mechanism underlying the R77Q-induced apoptotic phenotype, we performed RNA sequencing on a CD4+ T cell line, HUT78, infected with either a replication-competent wild-type strain (NL4-3) or the R77Q mutant. Our results show that at 72 hours post-infection, transcriptomes were heterogeneous, and differential expression analysis identified 289 differentially expressed genes (DEGs) in the R77Q vs. WT comparison. Functional enrichment analysis revealed enriched pathways associated with apoptosis. Gene ontology (GO) terms and GO connections also revealed an apoptotic signature. Although both viral strains upregulated pro-apoptotic genes, the R77Q mutant failed to upregulate some key anti-apoptotic genes such as bcl-2, while WT-infected cells displayed upregulation of those anti-apoptotic genes. Predicted protein-protein interaction within the Bcl-2 family local network also suggests that interactions within this network were substantially affected. Taken together, these findings provide a transcriptomic basis for our previous observations of enhanced apoptosis in R77Q-infected cells and highlight distinct host cell responses that may underlie delayed HIV-1 progression. These results may be useful in identifying new targets to delay AIDS progression. ImportanceThe R77Q mutant has been a long-standing variant of interest because of its association with long-term non-progressors (LTNPs), yet the mechanisms behind this phenotype remain poorly defined. We previously showed that the R77Q mutant is less cytotoxic, killing fewer cells than WT via a non-inflammatory apoptotic pathway while suppressing inflammatory cytokine release, possibly contributing to the LTNP phenotype. Here, we provide a transcriptomic basis for this phenotype and identify a potential novel loss-of-function mechanism in which R77Q-induced apoptosis arises from a failure to upregulate key anti-apoptotic genes. Defining host responses in the context of delayed HIV-1 progression offers novel insights into cellular networks that could inform future therapeutic strategies beyond the current antiviral approaches.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Sithole, S. T., Ramsey, J. S., Call, M. C., Poole, B. D., Pickett, B. E., Berges, B. K.. 2026-02-18. Host gene expression changes induced by an HIV-1 mutant associated with delayed AIDS progression reveal potential mechanisms. https://doi.org/10.64898/2026.02.18.706531

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related preprints

A conserved cysteine-histidine-glutamate metal site identifies DUF501 (Rv1025), an essential uncharacterised protein family of Mycobacterium tuberculosis, as a candidate metalloenzyme and drug target

A substantial fraction of the Mycobacterium tuberculosis proteome remains functionally uncharacterised. Rv1025, a 155-residue protein carrying the domain of unknown function DUF501 (Pfam PF04417), is essential by transposon mutagenesis and vulnerable by CRISPR interference, an attractive but neglected drug target, yet has never been functionally described. The family (4,370 proteins, no Gene Ontology term, no solved structure) is uncharacterised across all organisms and essential in three Actinobacterial genera. A Foldseek search of the AlphaFold model against complete structural databases finds no significant homolog, indicating a novel fold. The operon eno-divIC-Rv1025-ppx2 is conserved across the Actinobacteria phylum, yet AlphaFold-Multimer finds no direct complex between Rv1025 and its neighbour DivIC. Instead, conservation across 8,700 homologous sequences reveals a near-invariant Cys113-His115-Glu59 cluster forming a pocket. Holo AlphaFold3 predictions with Zn, Fe and Mn confidently place a divalent metal on this triad at 2.25-2.47 A; mutating the triad relocates the metal, and an independent backbone-geometry predictor recovers the same site, confirming specificity. The triad is universal across the family: present in all 1,472 near-complete bacterial sequences of the Pfam alignment, with no non-conservative substitution among the 2,228 sequences examined, a defining feature of bacterial DUF501 rather than a mycobacterial peculiarity. We propose that DUF501 is a metal-binding protein and candidate metalloenzyme, the first functional hypothesis for this family, whose conserved, essential metal pocket is a promising drug target. As the predictions build on a conservation-defined site within a fully computational study, they are supportive rather than proof of metal occupancy and warrant experimental validation.

microbiology↗

Mycoplasmal endosymbionts of Trichomonas vaginalis are associated with reduced risk for Chlamydia trachomatis endometrial infection in asymptomatic, coinfected, women.

Trichomonas vaginalis is a protozoan parasite that causes trichomoniasis, the most common curable non-viral sexually transmitted infection, and Chlamydia trachomatis is a bacterial pathogen that can ascend to the upper genital tract and cause pelvic inflammatory disease, infertility, and ectopic pregnancy. T. vaginalis harbors bacterial endosymbionts, including Candidatus Malacoplasma girerdii, an obligate symbiont, and Metamycoplasma hominis, which can live freely or symbiotically. In a 16S rRNA sequencing study of the cervicovaginal microbiome of women at high risk for chlamydial infection, Ca. M. girerdii abundance was one of 13 features predicting lack of chlamydial spread to the endometrium, despite no direct association between T. vaginalis infection and reduced chlamydial ascension. Investigating the relationship between these microorganisms further, we found that T. vaginalis vaginal abundance correlated positively with chlamydial burden in women whose infection was confined to the cervix, while a nonsignificant inverse relationship was seen in women with endometrial spread. Among participants with high chlamydial burden, Ca. M. girerdii was detected exclusively in women without endometrial infection. Both endosymbionts trended toward more frequent detection, and higher abundance, in coinfected women without endometrial spread, while M. hominis abundance correlated strongly with T. vaginalis burden in this group. These findings suggest that mycoplasmal endosymbionts of T. vaginalis, rather than T. vaginalis itself, are microbial factors limiting chlamydial ascension, and point to a three-way interaction between parasite, endosymbiont, and bacterial pathogen that shapes upper genital tract C. trachomatis infection risk.

microbiology↗

Understanding the physiological alterations of Vibrio cholerae upon exposure to L-ascorbic acid

The scourge of cholera remains a major global public health threat. It affects up to 4 million people worldwide and causes tens of thousands of deaths each year. The disease is experiencing a concerning resurgence in many parts of Africa, the Middle East, and Asia. To effectively tackle cholera and circumvent rising antimicrobial resistance, targeted biological and preventive approaches, complementing traditional rehydration, are urgently needed. In this regard, our group has demonstrated the efficacy of L-ascorbic acid in controlling the growth and pathogenesis of Vibrio cholerae in vitro. The present work further provides a mechanistic elucidation of the L-ascorbic acid-mediated physiological changes in V. cholerae and also bolsters such a non-antibiotic approach to control cholera.

microbiology↗