» Articles » PMID: 23292515

Functional and Evolutionary Insight from the Crystal Structure of Rubella Virus Protein E1

Overview
Journal Nature
Specialty Science
Date 2013 Jan 8
PMID 23292515
Citations 62
Authors
Affiliations
Soon will be listed here.
Abstract

Little is known about the three-dimensional organization of rubella virus, which causes a relatively mild measles-like disease in children but leads to serious congenital health problems when contracted in utero. Although rubella virus belongs to the same family as the mosquito-borne alphaviruses, in many respects it is more similar to other aerosol-transmitted human viruses such as the agents of measles and mumps. Although the use of the triple MMR (measles, mumps and rubella) live vaccine has limited its incidence in western countries, congenital rubella syndrome remains an important health problem in the developing world. Here we report the 1.8 Å resolution crystal structure of envelope glycoprotein E1, the main antigen and sole target of neutralizing antibodies against rubella virus. E1 is the main player during entry into target cells owing to its receptor-binding and membrane-fusion functions. The structure reveals the epitope and the neutralization mechanism of an important category of protecting antibodies against rubella infection. It also shows that rubella virus E1 is a class II fusion protein, which had hitherto only been structurally characterized for the arthropod-borne alphaviruses and flaviviruses. In addition, rubella virus E1 has an extensive membrane-fusion surface that includes a metal site, reminiscent of the T-cell immunoglobulin and mucin family of cellular proteins that bind phosphatidylserine lipids at the plasma membrane of cells undergoing apoptosis. Such features have not been seen in any fusion protein crystallized so far. Structural comparisons show that the class II fusion proteins from alphaviruses and flaviviruses, despite belonging to different virus families, are closer to each other than they are to rubella virus E1. This suggests that the constraints on arboviruses imposed by alternating cycles between vertebrates and arthropods resulted in more conservative evolution. By contrast, in the absence of this constraint, the strictly human rubella virus seems to have drifted considerably into a unique niche as sole member of the Rubivirus genus.

Citing Articles

A single-point mutation in the rubella virus E1 glycoprotein promotes rescue of recombinant vesicular stomatitis virus.

Das P, Gonzalez P, Jangra R, Yin P, Kielian M mBio. 2024; 15(3):e0237323.

PMID: 38334805 PMC: 10936182. DOI: 10.1128/mbio.02373-23.


Hantavirus: an overview and advancements in therapeutic approaches for infection.

Afzal S, Ali L, Batool A, Afzal M, Kanwal N, Hassan M Front Microbiol. 2023; 14:1233433.

PMID: 37901807 PMC: 10601933. DOI: 10.3389/fmicb.2023.1233433.


Viral Membrane Fusion: A Dance Between Proteins and Lipids.

White J, Ward A, Odongo L, Tamm L Annu Rev Virol. 2023; 10(1):139-161.

PMID: 37774128 PMC: 10866366. DOI: 10.1146/annurev-virology-111821-093413.


A Frame-by-Frame Glance at Membrane Fusion Mechanisms: From Viral Infections to Fertilization.

Azimi F, Dean T, Minari K, Basso L, Vance T, Serrao V Biomolecules. 2023; 13(7).

PMID: 37509166 PMC: 10377500. DOI: 10.3390/biom13071130.


Importation and circulation of rubella virus lineages 1E-L2 and 2B-L2c between 2018 and 2021 in China: Virus evolution and spatial-temporal transmission characteristics.

Liu Y, Han Z, Kang C, Cui A, Zhang Y, Liu L Virus Evol. 2022; 8(2):veac083.

PMID: 36533147 PMC: 9752544. DOI: 10.1093/ve/veac083.


References
1.
Kee S, Cho E, Song J, Park K, Baek L, Song K . Effects of endocytosis inhibitory drugs on rubella virus entry into VeroE6 cells. Microbiol Immunol. 2004; 48(11):823-9. DOI: 10.1111/j.1348-0421.2004.tb03614.x. View

2.
Castile J, Taylor K . Factors affecting the size distribution of liposomes produced by freeze-thaw extrusion. Int J Pharm. 1999; 188(1):87-95. DOI: 10.1016/s0378-5173(99)00207-0. View

3.
Kobayashi T, Chevallier J, Makino A, Mayran N, Escola J, Lebrand C . Separation and characterization of late endosomal membrane domains. J Biol Chem. 2002; 277(35):32157-64. DOI: 10.1074/jbc.M202838200. View

4.
Mitchell L, Zhang T, Ho M, Decarie D, Tingle A, Zrein M . Characterization of rubella virus-specific antibody responses by using a new synthetic peptide-based enzyme-linked immunosorbent assay. J Clin Microbiol. 1992; 30(7):1841-7. PMC: 265391. DOI: 10.1128/jcm.30.7.1841-1847.1992. View

5.
Bricogne G, Vonrhein C, Flensburg C, Schiltz M, Paciorek W . Generation, representation and flow of phase information in structure determination: recent developments in and around SHARP 2.0. Acta Crystallogr D Biol Crystallogr. 2003; 59(Pt 11):2023-30. DOI: 10.1107/s0907444903017694. View