Differential Selection of Cells with Proviral c- myc and c- erbB Integrations after Avian Leukosis Virus Infection

Author:

Gong Min1,Semus Helen L.1,Bird Kelly J.1,Stramer Brian J.1,Ruddell Alanna2

Affiliation:

1. Department of Microbiology and Immunology and Cancer Center, University of Rochester School of Medicine and Dentistry, Rochester, New York 14642,1 and

2. Division of Basic Sciences, Fred Hutchinson Cancer Research Center, Seattle, Washington 981092

Abstract

ABSTRACT Avian leukosis virus (ALV) infection induces bursal lymphomas in chickens after proviral integration within the c- myc proto-oncogene and induces erythroblastosis after integration within the c- erbB proto-oncogene. A nested PCR assay was used to analyze the appearance of these integrations at an early stage of tumor induction after infection of embryos. Five to eight distinct proviral c- myc integration events were amplified from bursas of infected 35-day-old birds, in good agreement with the number of transformed bursal follicles arising with these integrations. Cells containing these integrations are remarkably common, with an estimated 1 in 350 bursal cells having proviral c- myc integrations. These integrations were clustered within the 3′ half of c- myc intron 1, in a pattern similar to that observed in bursal lymphomas. Bone marrow and spleen showed a similar number and pattern of integrations clustered within 3′ c- myc intron 1, indicating that this region is a common integration target whether or not that tissue undergoes tumor induction. While all tissues showed equivalent levels of viral infection, cells with c- myc integrations were much more abundant in the bursa than in other tissues, indicating that cells with proviral c- myc integrations are preferentially expanded within the bursal environment. Proviral integration within the c- erbB gene was also analyzed, to detect clustered c- erbB intron 14 integrations associated with erythroblastosis. Proviral c- erbB integrations were equally abundant in the bone marrow, spleen, and bursa. These integrations were randomly situated upstream of c- erbB exon 15, indicating that cells carrying 3′ intron 14 integrations must be selected during induction of erythroblastosis.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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1. Neoplastic Diseases;Diseases of Poultry;2019-11-22

2. Neoplastic Diseases;Diseases of Poultry;2013-10-04

3. The PI3K/Akt pathway is involved in early infection of some exogenous avian leukosis viruses;Journal of General Virology;2011-07-01

4. Chicken Models of Retroviral Insertional Mutagenesis;Insertional Mutagenesis Strategies in Cancer Genetics;2010-10-21

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