Bratislav Dačević
@hemadzer.bsky.social
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📥 392
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🇷🇸 PhD student in photobiocatalysis 💡🧬
@RoelfesGroup.bsky.social
University of Groningen 🇳🇱
reposted by
Bratislav Dačević
Roelfes Group
1 day ago
Season’s greetings from the Roelfes and Mayer groups! 🎉🎄 Warm wishes to our colleagues, collaborators, and friends across the community for a joyful holiday season and an inspiring New Year ahead. ✨🧪
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reposted by
Bratislav Dačević
Fabrizio Casilli
4 months ago
📢📢 New paper out! AI and networks can be used to predict distal mutations in proteins, even in artificial enzymes! Check out the article here ----‐>
doi.org/10.1016/j.ij...
Thread 1/5 🧵
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reposted by
Bratislav Dačević
Clemens
5 months ago
With
#PFAS
and other organofluorides wreaking havoc, we set out to engineer natural defluorinases for man-made organofluorides. All credit goes to the amazing
@suzannejansen.bsky.social
, who has outdone herself in this project! (1/5)
www.biorxiv.org/content/10.1...
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Engineering fluoroacetate dehalogenase by growth-based selections to degrade non-natural organofluorides
The widespread use of organofluorides in modern society has inadvertently led to the bioaccumulation of harmful pollutants, most prominently per- and polyfluorinated alkyl substances (PFAS). In princi...
https://www.biorxiv.org/content/10.1101/2025.07.16.665192v1
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reposted by
Bratislav Dačević
Roelfes Group
6 months ago
#RepArtZymes
pre-conference in Basel also brought together some of our old and current group members.
@zhizhou1619.bsky.social
@reubenlg.bsky.social
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reposted by
Bratislav Dačević
Roelfes Group
7 months ago
📢📢📢 PhD Opportunity! Join our research group at RUG! We're seeking a motivated PhD student for a project on biocatalytic cascade processes combining natural and designer enzymes, supported by machine learning. Click below to learn more — and feel free to share!
sites.google.com/rug.nl/roelf...
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Roelfes group - Open Positions
PhD position on Hybrid biocatalytic cascades aided by Machine learning (1.0 FTE)
https://sites.google.com/rug.nl/roelfesgroup/open-positions
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Had an amazing week at the MetRaZymes
@metrazymes.bsky.social
Winter School in Hirschegg, Austria! It was a pleasure to learn, share, and connect with fellow researchers in our doctoral network. We organized and attended insightful lectures and workshops on ⬇️🧵
9 months ago
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reposted by
Bratislav Dačević
Roelfes Group
10 months ago
Our latest publication is out in
@angewandtechemie.bsky.social
! We generated and engineered a novel artificial metalloenzyme for the enantioselective synthesis of a panel of γ-nitro-carbonyl compounds on a preparative scale.
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reposted by
Bratislav Dačević
Bart Brouwer
10 months ago
Check out our latest preprint, in which we demonstrate the first example of using noncanonical 3-aminotyrosine (aY) as a catalytic residue for iminium activation in a designer enzyme! Thread ⬇️
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reposted by
Bratislav Dačević
Roelfes Group
12 months ago
Season's greetings from Roelfes and Mayer groups! Wishing our colleagues, collaborators, and the entire community a joyful holiday season and a prosperous New Year ahead! 🎉🎄✨🧪
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reposted by
Bratislav Dačević
Waser Group
about 1 year ago
OrgChem Starter pack has reached the 150 limit, so we started the sequel OrgChem2
go.bsky.app/GwH8tnF
add a skeleton here at some point
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reposted by
Bratislav Dačević
Waser Group
about 1 year ago
Our OrgChem Starter Pack is growing with already 122 entries, but we will start a volume 2 if we go over the 150 limit!
go.bsky.app/NSEFPFJ
add a skeleton here at some point
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reposted by
Bratislav Dačević
Roelfes Group
about 1 year ago
We are thrilled to share our new noble-metal enzyme design approach. We used the in-vivo incorporation of a noble-metal-binding ligand for ArM design to bridge the versatility of noble metals with the catalytic power of enzymes. Thread ⬇️
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reposted by
Bratislav Dačević
Roelfes Group
about 1 year ago
We are delighted to introduce our new Boron Designer Enzyme for the kinetic resolution of α-hydroxythioesters. For this activity, the noncanonical amino acid and a natural lysine residue have to work together to form a Hybrid Catalytic Dyad!
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