Aug 2026· Current Opinion in HIV and AIDS· Vol 21 5, pp.
372-378
· 0 citations· 56 references
Medicine
TL;DR
Defective HIV proviruses make up the majority of the proviral reservoir across blood and tissue compartments and may contribute to chronic inflammation, antigen persistence, and neuropathology in ART-suppressed PWH.
Abstract
Purpose
OF REVIEW
People with HIV (PWH) require lifelong antiretroviral therapy (ART) to maintain viral suppression, yet integrated HIV DNA persists in long-lived cellular reservoirs in blood and tissues. Most integrated proviruses are defective, meaning they contain deletions, hypermutation, packaging-signal defects, splice defects, or other defects that prevent production of replication-competent viruses. However, these genomes are not necessarily biologically inert as many remain capable of transcription and, in some cases, translation of viral proteins.
RECENT
Findings
Recent evidence has demonstrated that the brain is a stable reservoir of both intact and defective HIV despite viral suppression with ART. Whilst intact replication capable proviruses are known to induce cell activation and pathology, recent studies suggest that defective proviruses with large internal deletions and hypermutation can remain transcriptionally, and in some cases, translationally active and have now been linked with persistent immune activation during ART. Therefore, transcriptionally active defective proviral DNA may be a contributor to underlying neuropathogenesis in ART-suppressed PWH.
SUMMARY
Defective HIV proviruses make up the majority of the proviral reservoir across blood and tissue compartments. Although they are replication-incompetent, many remain transcriptionally and translationally competent and may contribute to chronic inflammation, antigen persistence, and neuropathology in ART-suppressed PWH.
It is proposed that defective HIV proviruses contribute to chronic inflammation in PWH through an MDA5-dependent induction of type I interferon pathways.
Jonathan Kilroy, Aparna A. Deokar, Samantha D. Patalano et al.· bioRxiv· 0 citations
It is proposed a model that innate immune sensing of these transcripts activates a MAVS-dependent pathway to contribute to chronic inflammation and HIV-associated comorbidities.
Aparna Deokar, Jonathan Kilroy, H. Akiyama et al.· Journal of Immunology· 0 citations
Emerging findings indicated that Cas13-based constructs can efficiently reduce HIV RNA levels and blunt viral gene expression, though durable impacts on reservoir size and clinical remission remain to be demonstrated.
Mukisa Ian Mugaiga· IDOSR Journal of Applied Sci...· 0 citations
The study reveals a distinct proviral landscape in ART-treated INRs, characterized by elevated levels of intact proviral genomes, and suggests that the intact component of the reservoir may represent a clinically relevant feature of incomplete immune reconstitution.
Shengquan Tang, Yue Wang, Yanqiu Lu et al.· Frontiers in Immunology· 0 citations
HIV-SCRIBE is developed, a CRISPR-based molecular recorder in which a self-targeting guide RNA locus is placed under a Tat-responsive minimal HIV-1 5'LTR promoter, coupling Cas9-mediated cleavage and error-prone repair to Tat-driven transcriptional activation to generate a durable molecular record of HIV-1 reactivation...
Nahia Urturi Ortiz, M. Nonnemacher, Brian Wigdahl· 0 citations
It is found that natural control was associated with mechanisms that reduce levels of total HIV DNA and the HIV promoter regions to below the levels seen in ART-treated noncontrollers (NC), resulting in lower total levels of most HIV transcripts.
Sun Jin Kim, Julie Janssens, Cordelia Isbell et al.· Journal of Virology· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.