Ensemble Structure of the Highly Flexible Complex Formed between Vesicular Stomatitis Virus Unassembled Nucleoprotein and its Phosphoprotein Chaperone. Issue 13 (3rd July 2016)
- Record Type:
- Journal Article
- Title:
- Ensemble Structure of the Highly Flexible Complex Formed between Vesicular Stomatitis Virus Unassembled Nucleoprotein and its Phosphoprotein Chaperone. Issue 13 (3rd July 2016)
- Main Title:
- Ensemble Structure of the Highly Flexible Complex Formed between Vesicular Stomatitis Virus Unassembled Nucleoprotein and its Phosphoprotein Chaperone
- Authors:
- Yabukarski, Filip
Leyrat, Cedric
Martinez, Nicolas
Communie, Guillaume
Ivanov, Ivan
Ribeiro, Euripedes A.
Buisson, Marlyse
Gerard, Francine C.
Bourhis, Jean-Marie
Jensen, Malene Ringkjøbing
Bernadó, Pau
Blackledge, Martin
Jamin, Marc - Abstract:
- Abstract: Nucleocapsid assembly is an essential process in the replication of the non-segmented, negative-sense RNA viruses (NNVs). Unassembled nucleoprotein (N 0 ) is maintained in an RNA-free and monomeric form by its viral chaperone, the phosphoprotein (P), forming the N 0 –P complex. Our earlier work solved the structure of vesicular stomatitis virus complex formed between an N-terminally truncated N (NΔ21 ) and a peptide of P (P60 ) encompassing the N 0 -binding site, but how the full-length P interacts with N 0 remained unknown. Here, we combine several experimental biophysical methods including size exclusion chromatography with detection by light scattering and refractometry, small-angle X-ray and neutron scattering and nuclear magnetic resonance spectroscopy with molecular dynamics simulation and computational modeling to characterize the NΔ21 0 –PFL complex formed with dimeric full-length P. We show that for multi-molecular complexes, simultaneous multiple-curve fitting using small-angle neutron scattering data collected at varying contrast levels provides additional information and can help refine structural ensembles. We demonstrate that (a) vesicular stomatitis virus PFL conserves its high flexibility within the NΔ21 0 –PFL complex and interacts with NΔ21 0 only through its N-terminal extremity; (b) each protomer of P can chaperone one N 0 client protein, leading to the formation of complexes with stoichiometries 1N:P2 and 2N:P2 ; and (c) phosphorylation ofAbstract: Nucleocapsid assembly is an essential process in the replication of the non-segmented, negative-sense RNA viruses (NNVs). Unassembled nucleoprotein (N 0 ) is maintained in an RNA-free and monomeric form by its viral chaperone, the phosphoprotein (P), forming the N 0 –P complex. Our earlier work solved the structure of vesicular stomatitis virus complex formed between an N-terminally truncated N (NΔ21 ) and a peptide of P (P60 ) encompassing the N 0 -binding site, but how the full-length P interacts with N 0 remained unknown. Here, we combine several experimental biophysical methods including size exclusion chromatography with detection by light scattering and refractometry, small-angle X-ray and neutron scattering and nuclear magnetic resonance spectroscopy with molecular dynamics simulation and computational modeling to characterize the NΔ21 0 –PFL complex formed with dimeric full-length P. We show that for multi-molecular complexes, simultaneous multiple-curve fitting using small-angle neutron scattering data collected at varying contrast levels provides additional information and can help refine structural ensembles. We demonstrate that (a) vesicular stomatitis virus PFL conserves its high flexibility within the NΔ21 0 –PFL complex and interacts with NΔ21 0 only through its N-terminal extremity; (b) each protomer of P can chaperone one N 0 client protein, leading to the formation of complexes with stoichiometries 1N:P2 and 2N:P2 ; and (c) phosphorylation of residues Ser60, Thr62 and Ser64 provides no additional interactions with N 0 but creates a metal binding site in PNTR . A comparison with the structures of Nipah virus and Ebola virus N 0 –P core complex suggests a mechanism for the control of nucleocapsid assembly that is common to all NNVs. Graphical abstract: Highlights: The N 0 –P complex is essential for VSV NC assembly. Complexes with stoichiometry 1N:2P and 2N:2P form depending on the conditions. P remains highly flexible within the complex. Phosphorylation of P (S60, T62, S64) provides no additional interaction with N 0 . Conserved assembly mechanism can be proposed on the basis of structure comparison. … (more)
- Is Part Of:
- Journal of molecular biology. Volume 428:Issue 13(2016:Jul. 01)
- Journal:
- Journal of molecular biology
- Issue:
- Volume 428:Issue 13(2016:Jul. 01)
- Issue Display:
- Volume 428, Issue 13 (2016)
- Year:
- 2016
- Volume:
- 428
- Issue:
- 13
- Issue Sort Value:
- 2016-0428-0013-0000
- Page Start:
- 2671
- Page End:
- 2694
- Publication Date:
- 2016-07-03
- Subjects:
- rhabdoviruses -- negative-strand RNA viruses -- viral replication -- nucleocapsid assembly -- small-angle scattering
NNV non-segmented, negative-sense RNA virus -- N0 unassembled nucleoprotein -- P phosphoprotein -- VSV vesicular stomatitis virus -- SAXS small-angle X-ray scattering -- SANS small-angle neutron scattering -- NC nucleocapsid -- NiV Nipah virus -- MeV measles virus -- EboV Ebola virus -- PFL full-length P -- SEC size exclusion chromatography -- MALLS multi-angle laser light scattering -- RI differential refractometry -- HSQC heteronuclear single quantum coherence -- MD molecular dynamics -- MBP maltose binding protein -- TEV tobacco etch virus -- TCEP tris(2-carboxyethyl)phosphine
Molecular biology -- Periodicals
Biology -- Periodicals
Biochemistry -- Periodicals
Bacteriology -- Periodicals
Molecular Biology -- Periodicals
Biochemistry -- Periodicals
Biologie moléculaire -- Périodiques
Biologie -- Périodiques
Biochimie -- Périodiques
Moleculaire biologie
Biochemistry
Biology
Molecular biology
Periodicals
572.805 - Journal URLs:
- http://www.sciencedirect.com/science/journal/00222836 ↗
http://www.elsevier.com/journals ↗ - DOI:
- 10.1016/j.jmb.2016.04.010 ↗
- Languages:
- English
- ISSNs:
- 0022-2836
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 5020.700000
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