Clemens Schulte
@clemensschulte.bsky.social
20 followers 23 following 3 posts
MSc. Biochemistry, Dr. rer. nat. | former grad student @hmariclab Peptides & Biophysics
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Reposted by Clemens Schulte
martinsteinegger.bsky.social
Folddisco finds similar (dis)continuous 3D motifs in large protein structure databases. Its efficient index enables fast uncharacterized active site annotation, protein conformational state analysis and PPI interface comparison. 1/9🧶🧬
📄 www.biorxiv.org/content/10.1...
🌐 search.foldseek.com/folddisco
Reposted by Clemens Schulte
christianehuhn.bsky.social
Our eSylites are on the cover of the current #JACS issue! Check it out 👇
jacs.acspublications.org
On the cover of this week's #JACS: "eSylites: Synthetic Probes for Visualization and Topographic Mapping of Single Excitatory Synapses"

Read it here 🔗 buff.ly/tunBPI2
#ChemSky
jacs-covers-25
clemensschulte.bsky.social
Make sure not to miss our latest paper out now in #JACS - presenting eSylites - small, peptide-based probes for precise mapping of neurons, etc.!

Microscale thermophoresis (MST) played a huge part in optimizing the probes structure and sequence for binding affinity.

#ChemicalBiology #Synapse
hmariclab.bsky.social
🚀 Excited to share our latest work in #JACS on eSylites!

—Synthetic, high-affinity #ChemicalBiology probes for #SuperResolution #Synapse visualization & precise mapping in neurons and brain slices—without the need for antibodies, tags, or transfection!

📢 Read more: pubs.acs.org/doi/10.1021/...
eSylites: Synthetic Probes for Visualization and Topographic Mapping of Single Excitatory Synapses
The spatiotemporal organization of the postsynaptic density (PSD) is a fundamental determinant of synaptic transmission, information processing, and storage in the brain. The major bottleneck that prevents the direct and precise representation of the nanometer-scaled organization of excitatory glutamatergic synapses is the size of antibodies, nanobodies, and the genetically encoded fluorescent tags. Here, we introduce small, high affinity synthetic probes for simplified, high contrast visualization of excitatory synapses without the limitations of larger biomolecules. In vitro binding quantification together with microscopy-based evaluation identified eSylites, a series of fluorescent bivalent peptides comprising a dye, linker, and sequence composition that show remarkable cellular target selectivity. Applied on primary neurons or brain slices at nanomolar concentrations, eSylites specifically report PSD-95, the key orchestrator of glutamate receptor nanodomains juxtaposed to the presynaptic glutamate release sites that mediate fast synaptic transmission. The eSylite design minimizes a spatial dye offset and thereby enables visualization of PSD-95 with improved localization precision and further time-resolved discrimination. In particular, we find that individual dendritic spines can contain separate nanodomains enriched for either PSD-95 or its closest homologues, PSD-93 or SAP102. Collectively, these data establish eSylites as a broadly applicable tool for simplified excitatory synapse visualization, as well as a high-end microscopy compatible probe for resolving the PSD organization with unprecedented resolution.
pubs.acs.org
Reposted by Clemens Schulte
hmariclab.bsky.social
🚨 Excited to share our work @elife.bsky.social doi.org/10.7554/eLife.98827.2 on targeting Hepatitis B virus #HBV 🦠 capsid aggregation by designed molecules! #DrugDiscovery #ChemBio

Thanks V Khayenko C Makbul @clemensschulte.bsky.social & @boettchercryoem.bsky.social for stunning #CryoEM visuals!
Reposted by Clemens Schulte
carlosmyruela.bsky.social
#SIRT7 is a histone deacetylase with highly specific activity on #chromatin substrates.
We just published mechanism-based #cryoEM structures of #SIRT7 on nucleosomes to understand its activity 👇
www.nature.com/articles/s41...
(1/8) #ChemBio #ChemSky
clemensschulte.bsky.social
Super excited to finally see the final version of this paper online 😁
Great team effort combining biophysics and #CryoEM for development of HepB aggregating compounds!
Huge thx to everyone involved!
hmariclab.bsky.social
🚨 Excited to share our work @elife.bsky.social doi.org/10.7554/eLife.98827.2 on targeting Hepatitis B virus #HBV 🦠 capsid aggregation by designed molecules! #DrugDiscovery #ChemBio

Thanks V Khayenko C Makbul @clemensschulte.bsky.social & @boettchercryoem.bsky.social for stunning #CryoEM visuals!