NWO XL Consortium "Viruses like it Sweet"

@viruseslikeitsweet.bsky.social

The department of Viroscience at the Erasmus MC and the department of Chemical Biology & Drug discovery at Utrecht University have joined forces to identify functional glycan receptors for #influenzaviruses, #enteroviruses and #noroviruses

Check out the new publication of Viruses like it 🍬🍭! @lisabauervirus.bsky.social and @debbyvanriel.bsky.social investigated the clade 2.3.4.4b A(H5N1) influenza virus attachment and replication in human respiratory epithelium! Congratulation to all involved!

Lisa Bauer@lisabauervirus.bsky.social · 8mo ago

Excited to share that our mansucript is finally published! Check it out here: www.thelancet.com/journals/lan...

Fascinated by Noroviruses🦠? Amazed by stem cell derived in vitro models🧫? And most importantly are you also intrigued by virus glycan interaction? If so come and join us as Postdoc within the NWO-XL Consortium Viruses like it Sweet 🍭🍬at Erasmus MC? www.werkenbijerasmusmc.nl/en/vacancy/1...

Vacature: Postdoc Virology

The department of Viroscience at the Erasmus MC and the department of Chemical Biology & Drug discovery at Utrecht University have joined forces to identify functional glycan receptors for influenza A...

werkenbijerasmusmc.nl

🧠🦠 Non-polio enteroviruses (NPEV) cause neurological complications like meningitis, encephalitis & acute flaccid paralysis—but we still don't fully understand HOW these viruses disrupt neural function! Here we have evidence that NPEV compromise neurotransmission 👇 doi.org/10.1101/2025...

Non-polio enteroviruses compromise the electrophysiology of a human iPSC-derived neural network

The non-polio Enteroviruses enterovirus-D68 (EV-D68) and enterovirus-A71 (EV-A71) are highly prevalent and considered pathogens of increasing health concern. While most enterovirus infections are mild...

doi.org

What can the scientific community do against the anti-science trend? Interesting point of view with ideas how we can address this important issue: 📖Science literacy education 🔬Transparency about science's capabilities and limitations 🧑‍🔬Take science communication serious www.nature.com/articles/s41...

Anti-science and the science community

Nature Reviews Microbiology - As anti-science sentiment intensifies — aggravated by the pandemic, driven in some parts of the world by political actors and amplified by social media —...

nature.com

We are happy to share the first publication of our consortium: pubs.acs.org/doi/10.1021/...

Sialic Acid-Containing Glycolipids Extend the Receptor Repertoire of Enterovirus-D68

Enterovirus D68 (EV-D68) emerged as a pathogen of increasing health concern globally, particularly due to its association with outbreaks of severe respiratory diseases and acute flaccid myelitis (AFM) in children. Knowledge regarding the tissue tropism and pathogenesis of EV-D68 within the respiratory tract and central nervous system remains limited, primarily due to an incomplete understanding of the host factors that facilitate the entry of EV-D68 into host cells. Several cellular receptors involved in EV-D68 infections have been identified, including ICAM-5, sialylated glycoproteins, and heparan sulfate (HS). Here, we investigate the receptor requirement of a panel of EV-D68 strains covering all clades, focusing on HS and sialosides utilizing glycan arrays. We found that all EV-D68 strains binding to HS harbor a cell culture adaptive substitution in the structural protein VP1 at position 271, which changes the amino acid into a positively charged one. Glycan array analyses revealed that EV-D68 strains prefer α2,6-linked sialic acids presented on N-glycans, α2,8-linked sialic acids on gangliosides, or both. Inhibition of glycolipid biosynthesis or multivalent glycolipid mimics confirmed that ganglioside structures serve as entry receptors for certain EV-D68 strains. Lastly, we examined whether EV-D68 strains that bind to HS or glycolipids require different uncoating mechanisms. Bafilomycin A1 minimally affected the cell entry of HS-binding EV-D68 strains B2/039 and B2/947, and the ganglioside preferring B1/2013 and other viruses were strongly inhibited. Together, we identified that EV-D68 strains can use disialoglycolipids as novel receptors and that different EV-D68 strains show a promiscuous sialic acid binding repertoire.

pubs.acs.org