๐ Dimerization of coronavirus nsp9 with diverse modes enhances its nucleic acid binding affinity
ยฉ 2018 American Society for Microbiology. Coronaviruses pose serious health threats to humans and other animals. Understanding the mechanisms of their replication has important implications for global health and economic stability. Nonstructural protein 9 (nsp9) is an essential RNA binding protein for coronavirus replication. However, the mechanisms of the dimerization and nucleic acid binding of nsp9 remain elusive. Here, we report four crystal structures, including wild-type porcine delta coronavirus (PDCoV) nsp9, PDCoV nsp9-ฮN7 (N-terminal 7 amino acids deleted), wild-type porcine epidemic diarrhea virus (PEDV) nsp9, and PEDV nsp9-C59A mutant. These structures reveal the diverse dimerization forms of coronavirus nsp9. We first found that the N-finger of nsp9 from PDCoV plays a critical role in dimerization. Meanwhile, PEDV nsp9 is distinguished by the presence of a disulfide bond in the dimer interface. Interestingly, size exclusion chromatography and analytical ultracentrifugation analyses indicate that the PDCoV nsp9-ฮN7 and PEDV nsp9-C59A mutants are monomeric in solution. In addition, electrophoretic mobility shift assays and microscale thermophoresis analysis indicate that the monomeric forms of PDCoV nsp9 and PEDV nsp9 still have nucleic acid binding affinity, although it is lower than that of the wild type. Our results show that the diverse dimerization forms of coronavirus nsp9 proteins enhance their nucleic acid binding affinity.
keywords
๐ amino acid (454)
๐ virus replication (219)
๐ nucleic acid (139)
๐ wild type (34)
๐ amino acids (205)
๐ crystal structure (114)
author
๐ค Zeng, Zhe
๐ค Deng, Feng
๐ค Shi, Ke
๐ค Ye, Gang
๐ค Wang, Gang
๐ค Fang, Liurong
๐ค Xiao, Shaobo
๐ค Fu, Zhenfang
๐ค Peng, Guiqing
year
โฐ 2018
journal
๐ Journal of Virology
issn
๐ 10985514 0022538X
volume
92
number
17
page
citedbycount
1
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