Literature DB >> 24647818

Mutations in herpes simplex virus gD protein affect receptor binding by different molecular mechanisms.

Joachim D Stump1, Heinrich Sticht.   

Abstract

Glycoprotein D (gD) is an essential protein of herpes simplex virus-1 (HSV-1) that targets the structurally unrelated receptors HVEM and nectin-1. Receptor binding of gD is accompanied by intramolecular structural rearrangements including the detachment of the C-terminus or formation of an N-terminal hairpin structure. We have investigated several gD mutations that were reported to affect receptor binding affinity or specificity in order to identify their molecular mode of action. Molecular dynamics simulations and subsequent energetic analyses of the gD-receptor complexes reveal that some mutations (M11A, N15A, L28A, T29A) play a more prominent role for HVEM binding than for nectin-1 binding, thereby conferring specificity to receptor recognition. However, our studies show that mutations can also affect the intramolecular structural rearrangement processes in gD. W294A and Q27A mutations facilitate the detachment of the C-terminus, and Q27A additionally hampers the formation of an intramolecular hairpin in gD that is exclusively established upon HVEM binding. The finding that a Q27A mutation affects multiple steps of the receptor binding process offers a molecular explanation for its enhanced nectin-1 affinity and the pronounced receptor specificity. This study also indicates that an inspection of the gD-receptor interfaces alone may be insufficient for predicting the effect of novel mutations that alter receptor specificity. Instead, such an analysis will additionally require to assess the effect of candidate mutation on the preceding steps of gD activation.

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Year:  2014        PMID: 24647818     DOI: 10.1007/s00894-014-2192-x

Source DB:  PubMed          Journal:  J Mol Model        ISSN: 0948-5023            Impact factor:   1.810


  36 in total

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Authors:  Heike Meiselbach; Anselm H C Horn; Thomas Harrer; Heinrich Sticht
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5.  Comparison of multiple Amber force fields and development of improved protein backbone parameters.

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6.  Engineered disulfide bonds in herpes simplex virus type 1 gD separate receptor binding from fusion initiation and viral entry.

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Authors:  M T Huber; T W Wisner; N R Hegde; K A Goldsmith; D A Rauch; R J Roller; C Krummenacher; R J Eisenberg; G H Cohen; D C Johnson
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3.  Herpes B virus gD interaction with its human receptor--an in silico analysis approach.

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Authors:  Balbina J Plotkin; Ira M Sigar; Vaibhav Tiwari; Scott Halkyard
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5.  Fragments of gD Protein as Inhibitors of BTLA/HVEM Complex Formation-Design, Synthesis, and Cellular Studies.

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Journal:  Int J Mol Sci       Date:  2020-11-23       Impact factor: 5.923

6.  Optimized Expression, Purification of Herpes B Virus gD Protein in Escherichia coli, and Production of Its Monoclonal Antibodies.

Authors:  Zian Jin; Tao Sun; Xueshan Xia; Qiujiang Wei; Yuzhu Song; Qinqin Han; Qiang Chen; Juan Hu; Jinyang Zhang
Journal:  Jundishapur J Microbiol       Date:  2016-03-12       Impact factor: 0.747

  6 in total

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