4.8 Article

Retroviral integrations contribute to elevated host cancer rates during germline invasion

Journal

NATURE COMMUNICATIONS
Volume 12, Issue 1, Pages -

Publisher

NATURE RESEARCH
DOI: 10.1038/s41467-021-21612-7

Keywords

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Funding

  1. Deutsche Forschungsgemeinschaft (DFG) [GR 3924/15-1]
  2. Morris Animal Foundation [D14ZO-94]
  3. Deutscher Akademischer Austauschdienst
  4. National Institute of General Medical Sciences (NIGMS) [2014 57129705, R01GM092706]

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The study reveals that the integration sites of Koala retrovirus cluster near known cancer genes and show a high mutational load associated with the virus's germline invasion. Koalas are prone to neoplasms when infected, with a high mutational load during virus germline invasion.
Repeated retroviral infections of vertebrate germlines have made endogenous retroviruses ubiquitous features of mammalian genomes. However, millions of years of evolution obscure many of the immediate repercussions of retroviral endogenisation on host health. Here we examine retroviral endogenisation during its earliest stages in the koala (Phascolarctos cinereus), a species undergoing germline invasion by koala retrovirus (KoRV) and affected by high cancer prevalence. We characterise KoRV integration sites (IS) in tumour and healthy tissues from 10 koalas, detecting 1002 unique IS, with hotspots of integration occurring in the vicinity of known cancer genes. We find that tumours accumulate novel IS, with proximate genes over-represented for cancer associations. We detect dysregulation of genes containing IS and identify a highly-expressed transduced oncogene. Our data provide insights into the tremendous mutational load suffered by the host during active retroviral germline invasion, a process repeatedly experienced and overcome during the evolution of vertebrate lineages. Koalas are susceptible to neoplasms, which are related to infection with the Koala retrovirus. Here, the authors use DNA sequencing to show that the retroviral insertion sites cluster near known cancer genes and demonstrate a high mutational load associated with the germline invasion of the virus.

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