Literature DB >> 26216977

Baculovirus protein PK2 subverts eIF2α kinase function by mimicry of its kinase domain C-lobe.

John J Li1, Chune Cao2, Sarah M Fixsen3, Janet M Young4, Chikako Ono5, Hisanori Bando6, Nels C Elde3, Susumu Katsuma7, Thomas E Dever8, Frank Sicheri9.   

Abstract

Phosphorylation of eukaryotic translation initiation factor 2α (eIF2α) by eIF2α family kinases is a conserved mechanism to limit protein synthesis under specific stress conditions. The baculovirus-encoded protein PK2 inhibits eIF2α family kinases in vivo, thereby increasing viral fitness. However, the precise mechanism by which PK2 inhibits eIF2α kinase function remains an enigma. Here, we probed the mechanism by which PK2 inhibits the model eIF2α kinase human RNA-dependent protein kinase (PKR) as well as native insect eIF2α kinases. Although PK2 structurally mimics the C-lobe of a protein kinase domain and possesses the required docking infrastructure to bind eIF2α, we show that PK2 directly binds the kinase domain of PKR (PKR(KD)) but not eIF2α. The PKR(KD)-PK2 interaction requires a 22-residue N-terminal extension preceding the globular PK2 body that we term the "eIF2α kinase C-lobe mimic" (EKCM) domain. The functional insufficiency of the N-terminal extension of PK2 implicates a role for the adjacent EKCM domain in binding and inhibiting PKR. Using a genetic screen in yeast, we isolated PK2-activating mutations that cluster to a surface of the EKCM domain that in bona fide protein kinases forms the catalytic cleft through sandwiching interactions with a kinase N-lobe. Interaction assays revealed that PK2 associates with the N- but not the C-lobe of PKR(KD). We propose an inhibitory model whereby PK2 engages the N-lobe of an eIF2α kinase domain to create a nonfunctional pseudokinase domain complex, possibly through a lobe-swapping mechanism. Finally, we show that PK2 enhances baculovirus fitness in insect hosts by targeting the endogenous insect heme-regulated inhibitor (HRI)-like eIF2α kinase.

Entities:  

Keywords:  HRI; PKR; eIF2α kinase inhibition; lobe-swap; viral mimicry

Mesh:

Substances:

Year:  2015        PMID: 26216977      PMCID: PMC4538665          DOI: 10.1073/pnas.1505481112

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  34 in total

1.  Heterologous dimerization domains functionally substitute for the double-stranded RNA binding domains of the kinase PKR.

Authors:  T L Ung; C Cao; J Lu; K Ozato; T E Dever
Journal:  EMBO J       Date:  2001-07-16       Impact factor: 11.598

2.  Mutational analysis of the vaccinia virus E3 protein defines amino acid residues involved in E3 binding to double-stranded RNA.

Authors:  C K Ho; S Shuman
Journal:  J Virol       Date:  1996-04       Impact factor: 5.103

3.  Phenotypic grouping of 141 BmNPVs lacking viral gene sequences.

Authors:  Chikako Ono; Takanori Kamagata; Hitomi Taka; Ken Sahara; Shin-ichiro Asano; Hisanori Bando
Journal:  Virus Res       Date:  2012-03-06       Impact factor: 3.303

4.  Molecular basis of actin nucleation factor cooperativity: crystal structure of the Spir-1 kinase non-catalytic C-lobe domain (KIND)•formin-2 formin SPIR interaction motif (FSI) complex.

Authors:  Kornelius Zeth; Markos Pechlivanis; Annette Samol; Sandra Pleiser; Clemens Vonrhein; Eugen Kerkhoff
Journal:  J Biol Chem       Date:  2011-06-26       Impact factor: 5.157

5.  Mechanistic link between PKR dimerization, autophosphorylation, and eIF2alpha substrate recognition.

Authors:  Madhusudan Dey; Chune Cao; Arvin C Dar; Tomohiko Tamura; Keiko Ozato; Frank Sicheri; Thomas E Dever
Journal:  Cell       Date:  2005-09-23       Impact factor: 41.582

6.  Identification of a conserved motif that is necessary for binding of the vaccinia virus E3L gene products to double-stranded RNA.

Authors:  H W Chang; B L Jacobs
Journal:  Virology       Date:  1993-06       Impact factor: 3.616

7.  Import of proteins into mitochondria. Yeast cells grown in the presence of carbonyl cyanide m-chlorophenylhydrazone accumulate massive amounts of some mitochondrial precursor polypeptides.

Authors:  G A Reid; G Schatz
Journal:  J Biol Chem       Date:  1982-11-10       Impact factor: 5.157

8.  Activation of the Antiviral Kinase PKR and Viral Countermeasures.

Authors:  Bianca Dauber; Thorsten Wolff
Journal:  Viruses       Date:  2009-10-27       Impact factor: 5.048

9.  Rapid evolution of protein kinase PKR alters sensitivity to viral inhibitors.

Authors:  Stefan Rothenburg; Eun Joo Seo; James S Gibbs; Thomas E Dever; Katharina Dittmar
Journal:  Nat Struct Mol Biol       Date:  2008-11-30       Impact factor: 15.369

10.  Systematic deletion of the adenovirus-associated RNAI terminal stem reveals a surprisingly active RNA inhibitor of double-stranded RNA-activated protein kinase.

Authors:  Ahmed M Wahid; Veronica K Coventry; Graeme L Conn
Journal:  J Biol Chem       Date:  2008-04-22       Impact factor: 5.157

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  6 in total

Review 1.  The diversity of insect antiviral immunity: insights from viruses.

Authors:  João T Marques; Jean-Luc Imler
Journal:  Curr Opin Microbiol       Date:  2016-05-24       Impact factor: 7.934

2.  Viral evasion of PKR restriction by reprogramming cellular stress granules.

Authors:  Peng Gao; Yuanyuan Liu; Hua Wang; Yue Chai; Wenlian Weng; Yongning Zhang; Lei Zhou; Xinna Ge; Xin Guo; Jun Han; Hanchun Yang
Journal:  Proc Natl Acad Sci U S A       Date:  2022-07-11       Impact factor: 12.779

3.  Expression of Ac-PK2 protein from AcMNPV improved the progeny virus production via regulation of energy metabolism and protein synthesis.

Authors:  Lili Wei; Aihua Liang; Yuejun Fu
Journal:  RSC Adv       Date:  2018-09-04       Impact factor: 4.036

4.  Baculovirus LEF-11 Hijack Host ATPase ATAD3A to Promote Virus Multiplication in Bombyx mori cells.

Authors:  Zhan-Qi Dong; Nan Hu; Fei-Fan Dong; Ting-Ting Chen; Ya-Ming Jiang; Peng Chen; Cheng Lu; Min-Hui Pan
Journal:  Sci Rep       Date:  2017-04-10       Impact factor: 4.379

Review 5.  The search for a PKR code-differential regulation of protein kinase R activity by diverse RNA and protein regulators.

Authors:  Charles Bou-Nader; Jackson M Gordon; Frances E Henderson; Jinwei Zhang
Journal:  RNA       Date:  2019-02-15       Impact factor: 4.942

Review 6.  Dance with the Devil: Stress Granules and Signaling in Antiviral Responses.

Authors:  Nina Eiermann; Katharina Haneke; Zhaozhi Sun; Georg Stoecklin; Alessia Ruggieri
Journal:  Viruses       Date:  2020-09-04       Impact factor: 5.048

  6 in total

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