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Proc Natl Acad Sci U S A ; 117(9): 4931-4941, 2020 03 03.
Article in English | MEDLINE | ID: mdl-32075920

ABSTRACT

Paramyxoviruses are enveloped, nonsegmented, negative-strand RNA viruses that cause a wide spectrum of human and animal diseases. The viral genome, packaged by the nucleoprotein (N), serves as a template for the polymerase complex, composed of the large protein (L) and the homo-tetrameric phosphoprotein (P). The ∼250-kDa L possesses all enzymatic activities necessary for its function but requires P in vivo. Structural information is available for individual P domains from different paramyxoviruses, but how P interacts with L and how that affects the activity of L is largely unknown due to the lack of high-resolution structures of this complex in this viral family. In this study we determined the structure of the L-P complex from parainfluenza virus 5 (PIV5) at 4.3-Šresolution using cryoelectron microscopy, as well as the oligomerization domain (OD) of P at 1.4-Šresolution using X-ray crystallography. P-OD associates with the RNA-dependent RNA polymerase domain of L and protrudes away from it, while the X domain of one chain of P is bound near the L nucleotide entry site. The methyltransferase (MTase) domain and the C-terminal domain (CTD) of L adopt a unique conformation, positioning the MTase active site immediately above the poly-ribonucleotidyltransferase domain and near the likely exit site for the product RNA 5' end. Our study reveals a potential mechanism that mononegavirus polymerases may employ to switch between transcription and genome replication. This knowledge will assist in the design and development of antivirals against paramyxoviruses.


Subject(s)
Methyltransferases/chemistry , Methyltransferases/metabolism , Paramyxovirinae/enzymology , Viral Proteins/chemistry , Viral Proteins/metabolism , Catalytic Domain , Cryoelectron Microscopy , Crystallography, X-Ray , Genome, Viral , Methyltransferases/genetics , Models, Molecular , Nucleoproteins/chemistry , Parainfluenza Virus 5/chemistry , Paramyxovirinae/genetics , Phosphoproteins/chemistry , Protein Binding , Protein Conformation , Protein Domains
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