Oligomerization of Baculovirus LEF-11 Is Involved in Viral DNA Replication
Author(s) -
Zhanqi Dong,
Nan Hu,
Jun Zhang,
Tingting Chen,
Ming-Ya Cao,
Haiqing Li,
Xue-jiao Lei,
Peng Chen,
Cheng Lu,
MinHui Pan
Publication year - 2015
Publication title -
plos one
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.99
H-Index - 332
ISSN - 1932-6203
DOI - 10.1371/journal.pone.0144930
Subject(s) - viral replication , dna replication , biology , mutagenesis , dna , replication factor c , microbiology and biotechnology , viral protein , mutant , virus , eukaryotic dna replication , virology , genetics , gene
We have previously reported that baculovirus Bombyx mori nucleopolyhedrovirus (BmNPV) late expression factor 11 ( lef-11 ) is associated with viral DNA replication and have demonstrated that it potentially interacts with itself; however, whether LEF-11 forms oligomers and the impact of LEF-11 oligomerization on viral function have not been substantiated. In this study, we first demonstrated that LEF-11 is capable of forming oligomers. Additionally, a series of analyses using BmNPV LEF-11 truncation mutants indicated that two distinct domains control LEF-11 oligomerization (aa 42–61 and aa 72–101). LEF-11 truncation constructs were inserted into a lef-11 -knockout BmNPV bacmid, which was used to demonstrate that truncated LEF-11 lacking either oligomerization domain abrogates viral DNA replication. Finally, site-directed mutagenesis was used to determine that the conserved hydrophobic residues Y58&I59 (representing Y58 and I59), I85 and L88&L89 (representing L88 and L89) are required for LEF-11 oligomerization and viral DNA replication. Collectively, these data indicate that BmNPV LEF-11 oligomerization influences viral DNA replication.
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