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April 15, 2026Pathobiology0 citations

The HIV-1 Budding Machinery: Deconstructing the ESCRT-Mediated Scission Pathway

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MYMahmoud Mohammad YaseenNANizar Mohammad Abuharfeil

Key Points

  • The aim is to synthesize current knowledge on the ESCRT-mediated mechanism for HIV-1 budding.
  • Comprehensive synthesis of molecular and structural insights related to ESCRT components.
  • Analysis of the role of Gag polyprotein motifs in recruiting ESCRT machinery.
  • Evaluation of ubiquitin signaling and its effects on HIV-1 budding efficiency.
  • Identified key motifs in Gag that engage specific adaptor proteins for ESCRT assembly.
  • Highlighted the dependence on membrane composition and cellular context for effective budding.
  • Evaluated links between ESCRT function and viral persistence, immune evasion, and therapy response.

Abstract

Human immunodeficiency virus type 1 (HIV-1) exploits the host endosomal sorting complexes required for transport (ESCRT) machinery to mediate the final step of its life cycle—virion budding and membrane scission. This review provides a comprehensive synthesis of current molecular and structural insights into the hierarchical recruitment and functional integration of ESCRT components by the viral Gag polyprotein. Particular emphasis is placed on the PTAP and YPXₙL late domain motifs within the p6 region of Gag, which engage distinct adaptor proteins, Tsg101 (ESCRT-I) and ALIX, to orchestrate the ordered assembly of downstream ESCRT-III polymers and the VPS4 ATPase that catalyzes membrane fission. The review further delineates the redundancy and adaptability of these recruitment pathways, the modulatory role of ubiquitin signaling, and the influence of membrane composition and cellular context on budding efficiency. Emerging data linking ESCRT function to viral persistence, immune evasion, and therapeutic susceptibility are critically evaluated. Unresolved mechanistic questions concerning ESCRT-III dynamics, VPS4-driven remodeling, and the spatial regulation of scission events are also identified. Collectively, this analysis establishes an integrated conceptual framework for understanding ESCRT-dependent HIV-1 egress and highlights potential molecular interfaces for targeted antiviral intervention.

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Cite This Study

Yaseen et al. (2026) studied this question.

synapsesocial.com/papers/69df2a99e4eeef8a2a6afa7bhttps://doi.org/10.1159/000551438
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