Skip to main content
bioRxiv
  • Home
  • About
  • Submit
  • ALERTS / RSS
Advanced Search
New Results

Probing effects of the SARS-CoV-2 E protein on membrane curvature and intracellular calcium

View ORCID ProfileAujan Mehregan, View ORCID ProfileSergio Pérez-Conesa, View ORCID ProfileYuxuan Zhuang, View ORCID ProfileAhmad Elbahnsi, Diletta Pasini, View ORCID ProfileErik Lindahl, View ORCID ProfileRebecca J Howard, View ORCID ProfileChris Ulens, View ORCID ProfileLucie Delemotte
doi: https://doi.org/10.1101/2021.05.28.446179
Aujan Mehregan
1Laboratory of Structural Neurobiology, Department of Cellular and Molecular Medicine, Faculty of Medicine, KU Leuven, Leuven, Belgium
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
  • ORCID record for Aujan Mehregan
Sergio Pérez-Conesa
2Department of Applied Physics, Science for Life Laboratory, KTH Royal Institute of Technology, Solna, Sweden
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
  • ORCID record for Sergio Pérez-Conesa
Yuxuan Zhuang
3Department of Biochemistry and Biophysics, Science for Life Laboratory, Stockholm University, Solna, Sweden
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
  • ORCID record for Yuxuan Zhuang
Ahmad Elbahnsi
2Department of Applied Physics, Science for Life Laboratory, KTH Royal Institute of Technology, Solna, Sweden
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
  • ORCID record for Ahmad Elbahnsi
Diletta Pasini
1Laboratory of Structural Neurobiology, Department of Cellular and Molecular Medicine, Faculty of Medicine, KU Leuven, Leuven, Belgium
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Erik Lindahl
2Department of Applied Physics, Science for Life Laboratory, KTH Royal Institute of Technology, Solna, Sweden
3Department of Biochemistry and Biophysics, Science for Life Laboratory, Stockholm University, Solna, Sweden
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
  • ORCID record for Erik Lindahl
Rebecca J Howard
3Department of Biochemistry and Biophysics, Science for Life Laboratory, Stockholm University, Solna, Sweden
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
  • ORCID record for Rebecca J Howard
  • For correspondence: lucied@kth.se chris.ulens@kuleuven.be rebecca.howard@dbb.su.se
Chris Ulens
1Laboratory of Structural Neurobiology, Department of Cellular and Molecular Medicine, Faculty of Medicine, KU Leuven, Leuven, Belgium
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
  • ORCID record for Chris Ulens
  • For correspondence: lucied@kth.se chris.ulens@kuleuven.be rebecca.howard@dbb.su.se
Lucie Delemotte
2Department of Applied Physics, Science for Life Laboratory, KTH Royal Institute of Technology, Solna, Sweden
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
  • ORCID record for Lucie Delemotte
  • For correspondence: lucied@kth.se chris.ulens@kuleuven.be rebecca.howard@dbb.su.se
  • Abstract
  • Full Text
  • Info/History
  • Metrics
  • Supplementary material
  • Data/Code
  • Preview PDF
Loading

Abstract

SARS-CoV-2 contains four structural proteins in its genome. These proteins aid in the assembly and budding of new virions at the ER-Golgi intermediate compartment (ERGIC). Current fundamental research efforts largely focus on one of these proteins – the spike (S) protein. Since successful antiviral therapies are likely to target multiple viral components, there is considerable interest in understanding the biophysical role of its other structural proteins, in particular structural membrane proteins. Here, we have focused our efforts on the characterization of the full-length envelope (E) protein from SARS-CoV-2, combining experimental and computational approaches. Recombinant expression of the full-length E protein from SARS-CoV-2 reveals that this membrane protein is capable of independent multimerization, possibly as a tetrameric or smaller species. Fluorescence microscopy shows that the protein localizes intracellularly, and coarse-grained MD simulations indicate it causes bending of the surrounding lipid bilayer, corroborating a potential role for the E protein in viral budding. Although we did not find robust electrophysiological evidence of ion-channel activity, cells transfected with the E protein exhibited reduced intracellular Ca2+, which may further promote viral replication. However, our atomistic MD simulations revealed that previous NMR structures are relatively unstable, and result in models incapable of ion conduction. Our study highlights the importance of using high-resolution structural data obtained from a full-length protein to gain detailed molecular insights, and eventually permitting virtual drug screening.

Competing Interest Statement

The authors have declared no competing interest.

Footnotes

  • https://zenodo.org/record/4818292#.YLEU8pMzY-Q

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY 4.0 International license.
Back to top
PreviousNext
Posted May 11, 2022.
Download PDF

Supplementary Material

Data/Code
Email

Thank you for your interest in spreading the word about bioRxiv.

NOTE: Your email address is requested solely to identify you as the sender of this article.

Enter multiple addresses on separate lines or separate them with commas.
Probing effects of the SARS-CoV-2 E protein on membrane curvature and intracellular calcium
(Your Name) has forwarded a page to you from bioRxiv
(Your Name) thought you would like to see this page from the bioRxiv website.
CAPTCHA
This question is for testing whether or not you are a human visitor and to prevent automated spam submissions.
Share
Probing effects of the SARS-CoV-2 E protein on membrane curvature and intracellular calcium
Aujan Mehregan, Sergio Pérez-Conesa, Yuxuan Zhuang, Ahmad Elbahnsi, Diletta Pasini, Erik Lindahl, Rebecca J Howard, Chris Ulens, Lucie Delemotte
bioRxiv 2021.05.28.446179; doi: https://doi.org/10.1101/2021.05.28.446179
Digg logo Reddit logo Twitter logo Facebook logo Google logo LinkedIn logo Mendeley logo
Citation Tools
Probing effects of the SARS-CoV-2 E protein on membrane curvature and intracellular calcium
Aujan Mehregan, Sergio Pérez-Conesa, Yuxuan Zhuang, Ahmad Elbahnsi, Diletta Pasini, Erik Lindahl, Rebecca J Howard, Chris Ulens, Lucie Delemotte
bioRxiv 2021.05.28.446179; doi: https://doi.org/10.1101/2021.05.28.446179

Citation Manager Formats

  • BibTeX
  • Bookends
  • EasyBib
  • EndNote (tagged)
  • EndNote 8 (xml)
  • Medlars
  • Mendeley
  • Papers
  • RefWorks Tagged
  • Ref Manager
  • RIS
  • Zotero
  • Tweet Widget
  • Facebook Like
  • Google Plus One

Subject Area

  • Biophysics
Subject Areas
All Articles
  • Animal Behavior and Cognition (3514)
  • Biochemistry (7365)
  • Bioengineering (5342)
  • Bioinformatics (20318)
  • Biophysics (10041)
  • Cancer Biology (7773)
  • Cell Biology (11348)
  • Clinical Trials (138)
  • Developmental Biology (6450)
  • Ecology (9979)
  • Epidemiology (2065)
  • Evolutionary Biology (13354)
  • Genetics (9370)
  • Genomics (12607)
  • Immunology (7724)
  • Microbiology (19087)
  • Molecular Biology (7459)
  • Neuroscience (41134)
  • Paleontology (300)
  • Pathology (1235)
  • Pharmacology and Toxicology (2142)
  • Physiology (3177)
  • Plant Biology (6878)
  • Scientific Communication and Education (1276)
  • Synthetic Biology (1900)
  • Systems Biology (5328)
  • Zoology (1091)