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Intronic deletions that disrupt mRNA splicing of the tva receptor gene result in decreased susceptibility to infection by avian sarcoma and leukosis virus subgroup A
M. Reinišová, J. Plachý, K. Trejbalová, F. Šenigl, D. Kučerová, J. Geryk, J. Svoboda, J. Hejnar,
Language English Country United States
Document type Journal Article, Research Support, Non-U.S. Gov't
NLK
Free Medical Journals
from 1967 to 6 months ago
Freely Accessible Science Journals
from 1967 to 6 months ago
PubMed Central
from 1967 to 1 year ago
Europe PubMed Central
from 1967 to 6 months ago
Open Access Digital Library
from 1967-02-01
Open Access Digital Library
from 1967-02-01
PubMed
22171251
DOI
10.1128/jvi.05771-11
Knihovny.cz E-resources
- MeSH
- Alpharetrovirus genetics physiology MeSH
- Genetic Predisposition to Disease MeSH
- Introns MeSH
- Chickens genetics metabolism virology MeSH
- Molecular Sequence Data MeSH
- Poultry Diseases genetics metabolism virology MeSH
- Avian Proteins genetics metabolism MeSH
- Sarcoma, Avian genetics metabolism virology MeSH
- Amino Acid Sequence MeSH
- Base Sequence MeSH
- Sequence Deletion MeSH
- RNA Splicing MeSH
- Receptors, Virus genetics metabolism MeSH
- Animals MeSH
- Check Tag
- Animals MeSH
- Publication type
- Journal Article MeSH
- Research Support, Non-U.S. Gov't MeSH
The group of closely related avian sarcoma and leukosis viruses (ASLVs) evolved from a common ancestor into multiple subgroups, A to J, with differential host range among galliform species and chicken lines. These subgroups differ in variable parts of their envelope glycoproteins, the major determinants of virus interaction with specific receptor molecules. Three genetic loci, tva, tvb, and tvc, code for single membrane-spanning receptors from diverse protein families that confer susceptibility to the ASLV subgroups. The host range expansion of the ancestral virus might have been driven by gradual evolution of resistance in host cells, and the resistance alleles in all three receptor loci have been identified. Here, we characterized two alleles of the tva receptor gene with similar intronic deletions comprising the deduced branch-point signal within the first intron and leading to inefficient splicing of tva mRNA. As a result, we observed decreased susceptibility to subgroup A ASLV in vitro and in vivo. These alleles were independently found in a close-bred line of domestic chicken and Indian red jungle fowl (Gallus gallus murghi), suggesting that their prevalence might be much wider in outbred chicken breeds. We identified defective splicing to be a mechanism of resistance to ASLV and conclude that such a type of mutation could play an important role in virus-host coevolution.
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