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High-Resolution Structure of the N-Terminal Endonuclease Domain of the Lassa Virus L Polymerase in Complex with Magnesium Ions

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Title
High-Resolution Structure of the N-Terminal Endonuclease Domain of the Lassa Virus L Polymerase in Complex with Magnesium Ions
Published in
PLOS ONE, February 2014
DOI 10.1371/journal.pone.0087577
Pubmed ID
Authors

Gregor D. Wallat, Qinfeng Huang, Wenjian Wang, Haohao Dong, Hinh Ly, Yuying Liang, Changjiang Dong

Abstract

Lassa virus (LASV) causes deadly hemorrhagic fever disease for which there are no vaccines and limited treatments. LASV-encoded L polymerase is required for viral RNA replication and transcription. The functional domains of L-a large protein of 2218 amino acid residues-are largely undefined, except for the centrally located RNA-dependent RNA polymerase (RdRP) motif. Recent structural and functional analyses of the N-terminal region of the L protein from lymphocytic choriomeningitis virus (LCMV), which is in the same Arenaviridae family as LASV, have identified an endonuclease domain that presumably cleaves the cap structures of host mRNAs in order to initiate viral transcription. Here we present a high-resolution crystal structure of the N-terminal 173-aa region of the LASV L protein (LASV L173) in complex with magnesium ions at 1.72 Å. The structure is highly homologous to other known viral endonucleases of arena- (LCMV NL1), orthomyxo- (influenza virus PA), and bunyaviruses (La Crosse virus NL1). Although the catalytic residues (D89, E102 and K122) are highly conserved among the known viral endonucleases, LASV L endonuclease structure shows some notable differences. Our data collected from in vitro endonuclease assays and a reporter-based LASV minigenome transcriptional assay in mammalian cells confirm structural prediction of LASV L173 as an active endonuclease. The high-resolution structure of the LASV L endonuclease domain in complex with magnesium ions should aid the development of antivirals against lethal Lassa hemorrhagic fever.

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Geographical breakdown

Country Count As %
France 1 2%
Unknown 49 98%

Demographic breakdown

Readers by professional status Count As %
Researcher 12 24%
Student > Master 9 18%
Student > Ph. D. Student 8 16%
Student > Bachelor 3 6%
Student > Postgraduate 3 6%
Other 2 4%
Unknown 13 26%
Readers by discipline Count As %
Biochemistry, Genetics and Molecular Biology 10 20%
Agricultural and Biological Sciences 8 16%
Immunology and Microbiology 5 10%
Chemistry 5 10%
Medicine and Dentistry 4 8%
Other 4 8%
Unknown 14 28%