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Hantaviruses use the endogenous host factor P58IPK to combat the PKR antiviral response.
Wang, Zekun; Ren, Songyang; Li, Qiming; Royster, Austin D; Lin, Lei; Liu, Sichen; Ganaie, Safder S; Qiu, Jianming; Mir, Sheema; Mir, Mohammad A.
Afiliação
  • Wang Z; Joint National Laboratory for Antibody Drug Engineering, School of Basic Medical Sciences, Henan University, Kaifeng, China.
  • Ren S; Western University of Health Sciences, Pomona, California, United States of America.
  • Li Q; Joint National Laboratory for Antibody Drug Engineering, School of Basic Medical Sciences, Henan University, Kaifeng, China.
  • Royster AD; Western University of Health Sciences, Pomona, California, United States of America.
  • Lin L; Joint National Laboratory for Antibody Drug Engineering, School of Basic Medical Sciences, Henan University, Kaifeng, China.
  • Liu S; Joint National Laboratory for Antibody Drug Engineering, School of Basic Medical Sciences, Henan University, Kaifeng, China.
  • Ganaie SS; Department of Microbiology, Molecular Genetics and Immunology, University of Kansas Medical Center, Kansas City, Kansas, United States of America.
  • Qiu J; Department of Microbiology, Molecular Genetics and Immunology, University of Kansas Medical Center, Kansas City, Kansas, United States of America.
  • Mir S; Western University of Health Sciences, Pomona, California, United States of America.
  • Mir MA; Western University of Health Sciences, Pomona, California, United States of America.
PLoS Pathog ; 17(10): e1010007, 2021 10.
Article em En | MEDLINE | ID: mdl-34653226
Hantavirus nucleocapsid protein (NP) inhibits protein kinase R (PKR) dimerization by an unknown mechanism to counteract its antiviral responses during virus infection. Here we demonstrate that NP exploits an endogenous PKR inhibitor P58IPK to inhibit PKR. The activity of P58IPK is normally restricted in cells by the formation of an inactive complex with its negative regulator Hsp40. On the other hand, PKR remains associated with the 40S ribosomal subunit, a unique strategic location that facilitates its free access to the downstream target eIF2α. Although both NP and Hsp40 bind to P58IPK, the binding affinity of NP is much stronger compared to Hsp40. P58IPK harbors an NP binding site, spanning to N-terminal TPR subdomains I and II. The Hsp40 binding site on P58IPK was mapped to the TPR subdomain II. The high affinity binding of NP to P58IPK and the overlap between NP and Hsp40 binding sites releases the P58IPK from its negative regulator by competitive inhibition. The NP-P58IPK complex is selectively recruited to the 40S ribosomal subunit by direct interaction between NP and the ribosomal protein S19 (RPS19), a structural component of the 40S ribosomal subunit. NP has distinct binding sites for P58IPK and RPS19, enabling it to serve as bridge between P58IPK and the 40S ribosomal subunit. NP mutants deficient in binding to either P58IPK or RPS19 fail to inhibit PKR, demonstrating that selective engagement of P58IPK to the 40S ribosomal subunit is required for PKR inhibition. Cells deficient in P58IPK mount a rapid PKR antiviral response and establish an antiviral state, observed by global translational shutdown and rapid decline in viral load. These studies reveal a novel viral strategy in which NP releases P58IPK from its negative regulator and selectively engages it on the 40S ribosomal subunit to promptly combat the PKR antiviral responses.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Infecções por Hantavirus / EIF-2 Quinase / Proteínas do Nucleocapsídeo / Interações entre Hospedeiro e Microrganismos Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Infecções por Hantavirus / EIF-2 Quinase / Proteínas do Nucleocapsídeo / Interações entre Hospedeiro e Microrganismos Idioma: En Ano de publicação: 2021 Tipo de documento: Article