7k1s Citations

The N-terminus of varicella-zoster virus glycoprotein B has a functional role in fusion.

Abstract

Varicella-zoster virus (VZV) is a medically important alphaherpesvirus that induces fusion of the virion envelope and the cell membrane during entry, and between cells to form polykaryocytes within infected tissues during pathogenesis. All members of the Herpesviridae, including VZV, have a conserved core fusion complex composed of glycoproteins, gB, gH and gL. The ectodomain of the primary fusogen, gB, has five domains, DI-V, of which DI contains the fusion loops needed for fusion function. We recently demonstrated that DIV is critical for fusion initiation, which was revealed by a 2.8Å structure of a VZV neutralizing mAb, 93k, bound to gB and mutagenesis of the gB-93k interface. To further assess the mechanism of mAb 93k neutralization, the binding site of a non-neutralizing mAb to gB, SG2, was compared to mAb 93k using single particle cryogenic electron microscopy (cryo-EM). The gB-SG2 interface partially overlapped with that of gB-93k but, unlike mAb 93k, mAb SG2 did not interact with the gB N-terminus, suggesting a potential role for the gB N-terminus in membrane fusion. The gB ectodomain structure in the absence of antibody was defined at near atomic resolution by single particle cryo-EM (3.9Å) of native, full-length gB purified from infected cells and by X-ray crystallography (2.4Å) of the transiently expressed ectodomain. Both structures revealed that the VZV gB N-terminus (aa72-114) was flexible based on the absence of visible structures in the cryo-EM or X-ray crystallography data but the presence of gB N-terminal peptides were confirmed by mass spectrometry. Notably, N-terminal residues 109KSQD112 were predicted to form a small α-helix and alanine substitution of these residues abolished cell-cell fusion in a virus-free assay. Importantly, transferring the 109AAAA112 mutation into the VZV genome significantly impaired viral propagation. These data establish a functional role for the gB N-terminus in membrane fusion broadly relevant to the Herpesviridae.

Articles - 7k1s mentioned but not cited (1)

  1. The N-terminus of varicella-zoster virus glycoprotein B has a functional role in fusion. Oliver SL, Xing Y, Chen DH, Roh SH, Pintilie GD, Bushnell DA, Sommer MH, Yang E, Carfi A, Chiu W, Arvin AM. PLoS Pathog 17 e1008961 (2021)


Reviews citing this publication (2)

  1. Varicella-zoster virus: molecular controls of cell fusion-dependent pathogenesis. Oliver SL, Zhou M, Arvin AM. Biochem Soc Trans 48 2415-2435 (2020)
  2. Well Put Together-A Guide to Accessorizing with the Herpesvirus gH/gL Complexes. Gonzalez-Del Pino GL, Heldwein EE. Viruses 14 296 (2022)

Articles citing this publication (7)

  1. Glycoprotein B Antibodies Completely Neutralize EBV Infection of B Cells. Hong J, Wei D, Zhong L, Wu Q, Chen K, Zhang W, Yang Y, Chen J, Xia N, Zhang X, Chen Y. Front Immunol 13 920467 (2022)
  2. Target highlights in CASP14: Analysis of models by structure providers. Alexander LT, Lepore R, Kryshtafovych A, Adamopoulos A, Alahuhta M, Arvin AM, Bomble YJ, Böttcher B, Breyton C, Chiarini V, Chinnam NB, Chiu W, Fidelis K, Grinter R, Gupta GD, Hartmann MD, Hayes CS, Heidebrecht T, Ilari A, Joachimiak A, Kim Y, Linares R, Lovering AL, Lunin VV, Lupas AN, Makbul C, Michalska K, Moult J, Mukherjee PK, Nutt WS, Oliver SL, Perrakis A, Stols L, Tainer JA, Topf M, Tsutakawa SE, Valdivia-Delgado M, Schwede T. Proteins 89 1647-1672 (2021)
  3. CRISPR-based quantum dot nanobead lateral flow assay for facile detection of varicella-zoster virus. Zhong X, Fu Q, Wang Y, Long L, Jiang W, Chen M, Xia H, Zhang P, Tan F. Appl Microbiol Biotechnol 107 3319-3328 (2023)
  4. Designing a polyvalent vaccine targeting multiple strains of varicella zoster virus using integrated bioinformatics approaches. Amin Rani N, Moin AT, Patil R, Barketullah Robin T, Zubair T, Nawal N, Sami MRS, Morshed MM, Zhai J, Xue M, Hossain M, Zheng C, Abul Manchur M, Islam NN. Front Microbiol 14 1291868 (2023)
  5. Herpes Simplex Virus Glycoprotein B Mutations Define Structural Sites in Domain I, the Membrane Proximal Region, and the Cytodomain That Regulate Entry. Fan Q, Longnecker R, Connolly SA. J Virol 95 e0105021 (2021)
  6. Targeted mutagenesis of the herpesvirus fusogen central helix captures transition states. Zhou M, Vollmer B, Machala E, Chen M, Grünewald K, Arvin AM, Chiu W, Oliver SL. Nat Commun 14 7958 (2023)
  7. The Structures and Functions of VZV Glycoproteins. Oliver SL. Curr Top Microbiol Immunol (2021)