Expanding the Proteome of an RNA Virus by Phosphorylation of an Intrinsically Disordered Viral Protein

被引:19
作者
Cordek, Daniel G. [1 ]
Croom-Perez, Tayler J. [1 ]
Hwang, Jungwook [4 ]
Hargittai, Michele R. S. [5 ]
Subba-Reddy, Chennareddy V. [6 ]
Han, Qingxia [1 ]
Lodeiro, Maria Fernanda [1 ]
Ning, Gang [2 ]
McCrory, Thomas S. [1 ]
Arnold, Jamie J. [1 ]
Koc, Hasan [7 ]
Lindenbach, Brett D. [6 ]
Showalter, Scott A. [3 ]
Cameron, Craig E. [1 ]
机构
[1] Penn State Univ, Dept Biochem & Mol Biol, University Pk, PA 16802 USA
[2] Penn State Univ, Huck Inst Life Sci, University Pk, PA 16802 USA
[3] Penn State Univ, Dept Chem, University Pk, PA 16802 USA
[4] Hanyang Univ, Grad Sch Biomed Sci & Engn, Seoul 133791, South Korea
[5] St Francis Univ, Dept Chem, Loretto, PA 15940 USA
[6] Yale Univ, Dept Microbial Pathogenesis, Sch Med, New Haven, CT 06536 USA
[7] Marshall Univ, Dept Pharmaceut Sci & Res, Sch Pharm, Huntington, WV 25755 USA
基金
美国国家卫生研究院;
关键词
Hepatitis C Virus (HCV); Intrinsically Disordered Protein; Phosphorylation; RNA Virus; Viral Replication; NMR; Non-structural Protein 5A; HEPATITIS-C VIRUS; NONSTRUCTURAL PROTEIN; NS5A PROTEIN; POTENT INHIBITORS; KINASE-C; REPLICATION; BINDING; DOMAIN; 5A; IDENTIFICATION;
D O I
10.1074/jbc.M114.589911
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Background: How can HCV require only 10 proteins for decades-long evasion of the immune system? Results: Phosphorylation of the intrinsically disordered domain (IDD) of NS5A changes its dynamics, inducing unique structure and function. Conclusion: IDD phosphorylation expands the HCV proteome. Significance: Post-translational modification of a viral IDD represents a strategy to expand a viral proteome when coding capacity is limited. The human proteome contains myriad intrinsically disordered proteins. Within intrinsically disordered proteins, polyproline-II motifs are often located near sites of phosphorylation. We have used an unconventional experimental paradigm to discover that phosphorylation by protein kinase A (PKA) occurs in the intrinsically disordered domain of hepatitis C virus non-structural protein 5A (NS5A) on Thr-2332 near one of its polyproline-II motifs. Phosphorylation shifts the conformational ensemble of the NS5A intrinsically disordered domain to a state that permits detection of the polyproline motif by using N-15-, C-13-based multidimensional NMR spectroscopy. PKA-dependent proline resonances were lost in the presence of the Src homology 3 domain of c-Src, consistent with formation of a complex. Changing Thr-2332 to alanine in hepatitis C virus genotype 1b reduced the steady-state level of RNA by 10-fold; this change was lethal for genotype 2a. The lethal phenotype could be rescued by changing Thr-2332 to glutamic acid, a phosphomimetic substitution. Immunofluorescence and transmission electron microscopy showed that the inability to produce Thr(P)-2332-NS5A caused loss of integrity of the virus-induced membranous web/replication organelle. An even more extreme phenotype was observed in the presence of small molecule inhibitors of PKA. We conclude that the PKA-phosphorylated form of NS5A exhibits unique structure and function relative to the unphosphorylated protein. We suggest that post-translational modification of viral proteins containing intrinsic disorder may be a general mechanism to expand the viral proteome without a corresponding expansion of the genome.
引用
收藏
页码:24397 / 24416
页数:20
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