Mouse Mammary Tumor Virus Integration Site Selection in Human and Mouse Genomes

Author:

Faschinger Alexander12,Rouault Francoise23,Sollner Johannes4,Lukas Arno4,Salmons Brian3,Günzburg Walter H.12,Indik Stanislav12

Affiliation:

1. Research Institute for Virology and Biomedicine, University of Veterinary Medicine Vienna, Vienna A-1210, Austria

2. Christian-Doppler Laboratory for Gene Therapeutic Vector Development, Vienna A-1210, Austria

3. Austrianova Biotechnology GmbH, Vienna A-1210, Austria

4. Emergentec Biodevelopment GmbH, Vienna A-1010, Austria

Abstract

ABSTRACT Based on integration site preferences, retroviruses can be placed into three groups. Viruses that comprise the first group, murine leukemia virus and foamy virus, integrate preferentially near transcription start sites. The second group, notably human immunodeficiency virus and simian immunodeficiency virus, preferentially targets transcription units. Avian sarcoma-leukosis virus (ASLV) and human T-cell leukemia virus (HTLV), forming the third group, show little preference for any genomic feature. We have previously shown that some human cells sustain mouse mammary tumor virus (MMTV) infection; therefore, we infected a susceptible human breast cell line, Hs578T, and, without introducing a species-specific bias, compared the MMTV integration profile to those of other retroviruses. Additionally, we infected a mouse cell line, NMuMG, and thus we could compare MMTV integration site selection in human and mouse cells. In total, we examined 468 unique MMTV integration sites. Irrespective of whether human or mouse cells were infected, no integration bias favoring transcription start sites was detected, a profile that is reminiscent of that of ASLV and HTLV. However, in contrast to ASLV and HTLV, not even a modest tendency in favor of integration within genes was observed. Similarly, repetitive sequences and genes that are frequently tagged by MMTV in mammary tumors were not preferentially targeted in cell culture either in mouse or in human cells; hence, we conclude that MMTV displays the most random dispersion of integration sites among retroviruses determined so far.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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