Spatial and Genomic Correlates of HIV-1 Integration Site Targeting

Author:

Singh Parmit KumarORCID,Bedwell Gregory J.,Engelman Alan N.ORCID

Abstract

HIV-1 integrase and capsid proteins interact with host proteins to direct preintegration complexes to active transcription units within gene-dense regions of chromosomes for viral DNA integration. Analyses of spatially-derived genomic DNA coordinates, such as nuclear speckle-associated domains, lamina-associated domains, super enhancers, and Spatial Position Inference of the Nuclear (SPIN) genome states, have further informed the mechanisms of HIV-1 integration targeting. Critically, however, these different types of genomic coordinates have not been systematically analyzed to synthesize a concise description of the regions of chromatin that HIV-1 prefers for integration. To address this informational gap, we have extensively correlated genomic DNA coordinates of HIV-1 integration targeting preferences. We demonstrate that nuclear speckle-associated and speckle-proximal chromatin are highly predictive markers of integration and that these regions account for known HIV biases for gene-dense regions, highly transcribed genes, as well as the mid-regions of gene bodies. In contrast to a prior report that intronless genes were poorly targeted for integration, we find that intronless genes in proximity to nuclear speckles are more highly targeted than are spatially-matched intron-containing genes. Our results additionally highlight the contributions of capsid and integrase interactions with respective CPSF6 and LEDGF/p75 host factors in these HIV-1 integration targeting preferences.

Funder

National Institute of Allergy and Infectious Diseases

Publisher

MDPI AG

Subject

General Medicine

Cited by 12 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. HIV-1 capsid and viral DNA integration;mBio;2024-01-16

2. Capsid–host interactions for HIV-1 ingress;Microbiology and Molecular Biology Reviews;2023-12-20

3. Viral and host mediators of non-suppressible HIV-1 viremia;Nature Medicine;2023-11-13

4. HIV-Induced CPSF6 Condensates;Journal of Molecular Biology;2023-08

5. Review and future perspectives on the integration characteristics for equine lentivirus in the host genome;Polish Journal of Veterinary Sciences;2023-07-26

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