4.6 Article

Sumoylation of Influenza A Virus Nucleoprotein Is Essential for Intracellular Trafficking and Virus Growth

期刊

JOURNAL OF VIROLOGY
卷 88, 期 16, 页码 9379-9390

出版社

AMER SOC MICROBIOLOGY
DOI: 10.1128/JVI.00509-14

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资金

  1. National Key Project of 973 [2013CB530504]
  2. National 863 Project [2012AA02A404, 2012AA020103]
  3. National Natural Science Foundation of China [81201280, 31030029, 31230024]
  4. Science and Technology Commission of Shanghai Municipality [12ZR1435000]
  5. SA-SIBS Scholarship Program
  6. CAS Youth Innovation Association
  7. CAS-SIBS Frontier Research Field Foundation for Young Scientists
  8. Albert-Ludwigs-Universitat Freiburg Foundation for Foreign Visiting Scientists
  9. National Science and Technology Major Project [2013ZX10004-101-005, 2013ZX10004-003-003, 2012ZX10002-007-003]
  10. CAS Key Project [KJZD-EW-L09-3]
  11. National Ministry of Science and Technology [2007DFC31700]
  12. Li Kha Shing Foundation

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Viruses take advantage of host posttranslational modifications for their own benefit. It was recently reported that influenza A virus proteins interact extensively with the host sumoylation system. Thereby, several viral proteins, including NS1 and M1, are sumoylated to facilitate viral replication. However, to what extent sumoylation is exploited by influenza A virus is not fully understood. In this study, we found that influenza A virus nucleoprotein (NP) is a bona fide target of sumoylation in both NP-transfected cells and virus-infected cells. We further found that NP is sumoylated at the two most N-terminal residues, lysines 4 and 7, and that sumoylation at lysine 7 of NP is highly conserved across different influenza A virus subtypes and strains, including the recently emerged human H7N9 virus. While NP stability and polymerase activity are little affected by sumoylation, the NP sumoylation-defective WSN-NPK4,7R virus exhibited early cytoplasmic localization of NP. The growth of the WSN-NPK4,7R virus was highly attenuated compared to that of the wild-type WSN virus, and the lysine residue at position 7 is indispensable for the virus's survival, as illustrated by the rapid emergence of revertant viruses. Thus, sumoylation of influenza A virus NP is essential for intracellular trafficking of NP and for virus growth, illustrating sumoylation as a crucial strategy extensively exploited by influenza A virus for survival in its host.

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