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Sedimentation Equilibrium of a Small Oligomer-forming Membrane Protein: Effect of Histidine Protonation on Pentameric Stability
Published on: April 2, 2015
Histidine 39 in the dengue virus type 2 M protein has an important role in virus assembly
Melinda J Pryor1, Lisa Azzola1, Peter J Wright1
1Department of Microbiology, Monash University, Clayton 3168, Victoria, Australia.
Abstract:
The mature flavivirus particle comprises a nucleocapsid core surrounded by a lipid bilayer containing the membrane (M) (derived from the precursor prM) and envelope (E) proteins. The formation of intracellular prM/E heterodimers occurs rapidly after translation and is believed to be important for the assembly and secretion of immature virus particles. In this study, the role of the His residue at position 39 in the M protein (M39) of dengue virus type 2 (DENV-2) in the virus life cycle was investigated. Mutations encoding basic (Arg), non-polar (Leu and Pro) and uncharged polar (Asn, Gln and Tyr) amino acids at M39 were introduced into a DENV-2 genomic-length cDNA clone and their effects on virus replication were examined. Substitution of the His residue with non-polar amino acids abolished virus replication, whereas substitution with basic or uncharged polar amino acids decreased virus replication moderately ( approximately 2 log(10) p.f.u. ml(-1) decrease in viral titre for Arg and Asn) or severely (>3.5 log(10) p.f.u. ml(-1) decrease in viral titre for Gln and Tyr). Selected mutations were introduced into a prM-E gene cassette and expressed transiently in COS cells to investigate whether the mutations impaired prM/E association or secretion. None of the mutations was found to disrupt the formation of intracellular prM/E heterodimers. However, the mutations that abolished virus replication prevented secretion of prM/E complexes. The results of this study pinpoint a critical residue in the M protein that potentially plays a role in viral morphogenesis, secretion and entry.
Insights
A specific histidine residue (M39) in dengue virus type 2 (DENV-2) membrane protein is crucial for virus replication. Mutations here impair prM/E complex secretion, impacting viral morphogenesis and entry.
Area of Science:
- Virology
- Molecular Biology
- Structural Biology
Background:
- Flavivirus particles contain a nucleocapsid core within a lipid bilayer with membrane (M) and envelope (E) proteins.
- Intracellular prM/E heterodimer formation is vital for immature flavivirus particle assembly and secretion.
Purpose of the Study:
- To investigate the role of histidine at position 39 (M39) in the dengue virus type 2 (DENV-2) M protein during the virus life cycle.
Main Methods:
- Mutations substituting M39 with various amino acids were introduced into a DENV-2 genomic clone.
- Virus replication was assessed, and selected mutations were expressed in COS cells to examine prM/E association and secretion.
Main Results:
- Non-polar amino acid substitutions at M39 abolished virus replication.
- Basic or uncharged polar substitutions moderately to severely decreased viral replication.
- Mutations abolishing replication prevented prM/E complex secretion, though intracellular heterodimer formation remained intact.
Conclusions:
- The M39 residue is critical for DENV-2 viral morphogenesis and secretion.
- M39 plays a key role in the secretion of prM/E complexes, essential for the virus life cycle.
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