Solution Structure, Self-Assembly, and Membrane Interactions of the Matrix Protein from Newcastle Disease Virus at Neutral and Acidic pH
Author(s) -
Eleonora V. Shtykova,
Maxim V. Petoukhov,
Ljubov A. Dadinova,
Natalia V. Fedorova,
V. Yu. Tashkin,
Т. А. Тимофеева,
Alexander L. Ksenofontov,
Nikita A. Loshkarev,
Ludmila A. Baratova,
Cy M. Jeffries,
Dmitri I. Svergun,
Oleg V. Batishchev
Publication year - 2018
Publication title -
journal of virology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.617
H-Index - 292
eISSN - 1070-6321
pISSN - 0022-538X
DOI - 10.1128/jvi.01450-18
Subject(s) - paramyxoviridae , viral matrix protein , measles virus , vp40 , biology , mononegavirales , virus , newcastle disease , pneumovirinae , virology , viral entry , viral replication , viral disease , measles , vaccination
The matrix protein of the Newcastle disease virus (NDV) is one of the most abundant viral proteins that regulates the formation of progeny virions. NDV is an avian pathogen that impacts the economics of bird husbandry due to its resulting morbidity and high mortality rates. Moreover, it belongs to theAvulavirus subfamily of theParamyxoviridae family ofMononegavirales that include dangerous representatives such as respiratory syncytial virus, human parainfluenza virus, and measles virus. Here, we investigate the solution structure and membrane binding properties of this protein at both acidic and neutral pH to distinguish between possible virus entry pathways and propose a mechanism of assembly of the viral matrix scaffold. This work is fundamental for understanding the mechanisms of viral entry as well as to inform subsequent proposals for the possible use of the virus as an adequate template for future drug or vaccine delivery.
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