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1.
Biol Direct ; 10: 65, 2015 Oct 29.
Article in English | MEDLINE | ID: mdl-26514828

ABSTRACT

Many proteins of viruses infecting hyperthermophilic Crenarchaeota have no detectable homologs in current databases, hampering our understanding of viral evolution. We used sensitive database search methods and structural modeling to show that a nucleocapsid protein (TP1) of Thermoproteus tenax virus 1 (TTV1) is a derivative of the Cas4 nuclease, a component of the CRISPR-Cas adaptive immunity system that is encoded also by several archaeal viruses. In TTV1, the Cas4 gene was split into two, with the N-terminal portion becoming TP1, and lost some of the catalytic amino acid residues, apparently resulting in the inactivation of the nuclease. To our knowledge, this is the first described case of exaptation of an enzyme for a virus capsid protein function.


Subject(s)
Archaeal Proteins/genetics , Endonucleases/genetics , Evolution, Molecular , Lipothrixviridae/enzymology , Lipothrixviridae/genetics , Nucleocapsid Proteins/genetics , Archaeal Proteins/metabolism , CRISPR-Cas Systems , Endonucleases/metabolism , Nucleocapsid Proteins/metabolism , Thermoproteus/genetics , Thermoproteus/virology
2.
J Virol ; 84(10): 5025-31, 2010 May.
Article in English | MEDLINE | ID: mdl-20200253

ABSTRACT

Acidianus filamentous virus 1 (AFV1) (Lipothrixviridae) is an enveloped filamentous virus that was characterized from a crenarchaeal host. It infects Acidianus species that thrive in the acidic hot springs (>85 degrees C and pH <3) of Yellowstone National Park, WY. The AFV1 20.8-kb, linear, double-stranded DNA genome encodes 40 putative open reading frames whose sequences generally show little similarity to other genes in the sequence databases. Because three-dimensional structures are more conserved than sequences and hence are more effective at revealing function, we set out to determine protein structures from putative AFV1 open reading frames (ORF). The crystal structure of ORF157 reveals an alpha+beta protein with a novel fold that remotely resembles the nucleotidyltransferase topology. In vitro, AFV1-157 displays a nuclease activity on linear double-stranded DNA. Alanine substitution mutations demonstrated that E86 is essential to catalysis. AFV1-157 represents a novel class of nuclease, but its exact role in vivo remains to be determined.


Subject(s)
Acidianus/virology , Deoxyribonucleases/chemistry , Deoxyribonucleases/metabolism , Lipothrixviridae/chemistry , Lipothrixviridae/enzymology , Viral Proteins/chemistry , Viral Proteins/metabolism , Amino Acid Sequence , Amino Acid Substitution , Crystallography, X-Ray , DNA/metabolism , DNA Mutational Analysis , Deoxyribonucleases/genetics , Hot Springs/microbiology , Lipothrixviridae/genetics , Models, Molecular , Molecular Sequence Data , Mutagenesis, Site-Directed , Open Reading Frames , Protein Structure, Tertiary , Viral Proteins/genetics
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