#smFRET
Our latest work is out in Nature today! Using smFRET, we directly visualized recruitment of the eIF4F complex to the 5' cap of eukaryotic mRNAs and formation of an activated mRNA. Our findings reveal new and surprising roles for each eIF4F component. 1/3 www.nature.com/articles/s41...
December 11, 2024 at 9:35 PM
(Cross post LinekdIn) V0.12.1 of #webSMLM released with inbuilt terminal functionality and experimental #smFRET (ALEX-TIRF) implementation.
September 13, 2026 at 8:41 AM
Nice overview of another cool #smFRET study, this time unpicking protein folding dynamics @timcraggs.bsky.social @ei-science.bsky.social
Scientists say they have made some of the first direct measurements of how long it takes an individual, ordinary protein to fold – and the results were surprising.

go.nature.com/3N4UrSD
How fast does a protein fold? Real-time technique captures the moment
Proteins assume complex 3D shapes even faster than does DNA, which is a simpler molecule.
go.nature.com
March 10, 2026 at 6:41 AM
💥 We have 3 positions open in my lab in Basel, Switzerland🇨🇭:
#nanopores #smFRET #biomolecular #dynamics #singleMolecules

We’re looking for talented & ambitious new colleagues enthusiastic about biomolecular dynamics & single-molecule tech.

Please share broadly, thank you!🤝

schmid.chemie.unibas.ch
Home | Research Group Schmid | University of Basel
schmid.chemie.unibas.ch
July 31, 2025 at 2:34 PM
New work out today in PNAS!

Secondary active transporters are everywhere, but direct observation of their structural dynamics is rarely achieved.

Here, we capture the real-time dynamics of a sodium-coupled dicarboxylate transporter using smFRET.

🧵⬇️
doi.org/10.1073/pnas...
January 6, 2026 at 11:12 PM
🚨 New preprint!🚨We introduce a DNA-scaffold strategy for efficient dye labelling of structured RNAs, enabling #smFRET studies of freely-diffusing SARS-CoV-2 pseudoknots🧬
👉 biorxiv.org/content/10.1...

#smFRET #RNA #biophysics #SARSCoV2 #singlemolecule #Covid
A DNA scaffold approach facilitates 5′ labelling of the SARS-CoV-2 RNA pseudoknot for smFRET investigation
Single-molecule Förster resonance energy transfer (smFRET) studies of highly structured RNA molecules are often frustrated by issues with efficient dye conjugation. Here, we develop a DNA scaffold-bas...
biorxiv.org
July 30, 2025 at 9:16 AM
Preprint alert! Using smFRET, we define the only essential ATP hydrolysis step in translation initiation. We show that eIF3 and eIF4B stimulate ATP-hydrolysis-dependent recycling of cap-stalled eIF4F, coupling eIF4F recycling to PIC loading onto an mRNA.🔬 doi.org/10.64898/202...
June 24, 2026 at 9:47 PM
🤔 Still wondering how smFRET works in practice - and how it complements your current techniques?

Our handbook shows when and why to use it alongside existing methods to add dynamic, single-molecule insight.

Download: buff.ly/CxuqL1A

#smFRET #biophysics #biochemistry
May 5, 2026 at 8:53 AM
A (belated!) highlight from an excellent collaboration with
@dunhamlab.bsky.social and #HouLabTJU.

In this Nat Commun paper, we combine smFRET and cryo-EM to show how the tRNA modification m¹G37 stabilizes the reading frame—and what happens when it’s missing.
January 4, 2026 at 6:34 PM
An intro, since I’m new to Bluesky: I’m a #biophysics PhD candidate in Dr. Sarah Woodson’s #RNA lab at @johnshopkins.bsky.social! I’m combining MD w/ NMR + confocal smFRET + TIRF to study the dynamics underlying Hfq-RNA complexes. (I also study ribozyme folding on the side!) Excited to connect 😊🧬
November 25, 2024 at 11:02 PM
Want to learn more about the origins of single molecule fluorescence detection?

Checkout our Exciting Seminar with Prof. Shimon Weiss, a pioneer of the techniques and their application.

spFRET / smFRET - A Story of Tools Making

www.youtube.com/watch?v=MBI8...
spFRET/smFRET - A Story of Tools Making | Prof. Shimon Weiss | Exciting Seminars
YouTube video by Exciting Instruments
www.youtube.com
November 20, 2024 at 1:23 PM
Another beautiful example how #smFRET is such a useful tool … for everything 😉. But here specifically used by the @woodsonlab.bsky.social to understand mechanisms in RNA biology/translation. Congrats to all authors!!
New #Breakthrough article from @Woodsonlab.bsky.social shows how the E.coli RNA DEAD-box helicase unfolds unstable RNAs to fuel ribosomal RNA remodeling and the search for the native, protein binding structure! #Ribosome #RNA #Helicase 👉 Full article: https://doi.org/10.1093/nar/gkaf104
February 24, 2025 at 6:42 PM
Beautiful work showing the power of #smFRET for uncovering the complexities ensembles in biology, this time for #RNA structures during transcription- congratulations @olivierduss.bsky.social !!
My first PhD student‘s, Kavan Gor, paper on 5-color single-molecule imaging of co-transcriptional RNA folding is out in @science.org Advances!

He finds how RNA modification enzymes, antisense oligonucleotides and ribosomal proteins re-route nascent RNA folding.

See more details in EMBL post below!
embl.org EMBL @embl.org · Mar 24
(1/2) EMBL researchers led by @olivierduss.bsky.social have developed a microscopy technique that enables them to observe individual RNA molecules being produced and folding into different shapes.

Learn more: www.science.org/doi/10.1126/...
April 2, 2026 at 5:35 AM
It's been a privilege to be involved with this. #FRET approaches have so many potential applications for linking in vitro studies with in cell behaviours, but lacked a consistent benchmarking molecule that works across systems: not any more! #IDRs #smFRET #singlemolecule
Fancy a fresh preprint for Friday? When we were first getting involved with single molecule FRET, there weren't any standard protein molecules that suited our applications to help us develop our pipeline. So we built some! A universal protein ladder for FRET. 🧵 1/
March 6, 2026 at 2:05 PM
#smFRET for the win! What can be more convincing than seeing proteins in action. (Here through DNA-labelling.)
July 30, 2025 at 6:57 AM
Check our new preprint ! Triple orthogonal labeling of a GPCR with 2 unnatural aminoacids + 1 SNAP-Tag for 3 color #smFRET. We resolve a new intermediate in the activation of metabotropic glutamate receptor 2.
#GPCR #clickchemistry #singlemolecules
www.biorxiv.org/content/10.1...
November 13, 2024 at 2:39 PM
Oh this looks 🤩. #smFRET

Thanks for making all these efforts to outreach. In case anyone has questions, please do not hesitate to contact me. 📝🧑‍💻
Michael SCHLIERF @schlierflab.bsky.social's lecture is online !

👉 "Large Throughput Single-Molecule FRET to Study Protein Structure and Dynamics"

👉 youtu.be/WHCGmtLTkEs

@tudresden.bsky.social
@tum.de
@lmumuenchen.bsky.social
@cnrsingenierie.bsky.social
@cnrs.fr

#Mifobio2025 #GDRImabio
November 6, 2025 at 7:51 PM
Day in the life of an academic - smFRET onto Lattice light sheet then delivering an afternoon workshop
March 27, 2025 at 2:23 PM
One week left to apply for a group leader position at the Laboratory of Biophysics (tenure track). Access to excellent imaging facilities (CLSM, STED, FLIM, Multi-photon, SMLM, smFRET, Raman, MRI,…) and more. #jobs
#Jobs We are looking for a new colleague! Tenure Track Assistant Professor in Biophysics in the domains of functional imaging and biophysics. More info here: www.wur.nl/en/vacancy/a...
Assistant Professor in Biophysics
www.wur.nl
February 20, 2025 at 8:15 AM
Our new smFRET assay to follow intersubunit rotation of eukaryotic ribosomes during translation elongation is out:

academic.oup.com/nar/article/...
Observing intersubunit dynamics in single yeast ribosomes
Abstract. Translation is accompanied by the rotation of the small and large ribosomal subunits relative to each other. Here, we use single-molecule Förster
academic.oup.com
June 10, 2026 at 2:04 AM
“Instrument booked for weeks in advance”

YAY! 🎉

(A user of our smFRET instrument said)

Users appreciate it being:
- Easy to use
- Easy to learn
- Accessible to anyone (students → experienced scientists)

If you want to talk smFRET, catch us at #BPS2025, booth 410
February 12, 2025 at 12:08 PM
Conformational Ensembles of the Disordered 4E-BP2:eIF4E Complex Restrained by smFRET Experiments https://www.biorxiv.org/content/10.64898/2026.04.21.719986v1
April 24, 2026 at 9:48 PM
June 24, 2025 at 9:08 PM
I am very much looking forward to an inspiring week at #Mifobio2025 - thanks for the invite! I am counting on learning new exciting (pun intended) insights on fluorescence and happy to share our experience and vision on large throughput #smFRET .
Let's explore the #Mifobio2025 programme !

👉 "Focus On” : “Single Molecule Fluorescence Microscopies for Drug Discovery”

✨ We are delighted to welcome @schlierflab.bsky.social

🎤 Lecture : Large Throughput Single-Molecule FRET to Study Protein Structure and Dynamics

👉 imabio-cnrs.fr
#GDRimabio
October 8, 2025 at 3:12 PM
A new study from our Team is just published !
Advanced protein engineering + 3 colors single molecule FRET on metabotropic glutamate receptors.
#smFRET #GPCR #fluorescencefriday #clickchemistry
Our new study is out !
We introduce a triple labeling strategy (2 non canonical Amino Acids + 2 click chemistries and 1 SNAP-tag) to triple label a G-protein coupled receptor.
Open access in JACS
pubs.acs.org/doi/10.1021/...
Triple Labeling Resolves a GPCR Intermediate State by Using Three-Color Single Molecule FRET
The correlation of individual conformational changes in dynamic protein complexes remains challenging as most structural methods rely on averaged information over a large number of molecules. Single molecule FRET is a powerful tool for monitoring such conformational changes. When performed using three distinct probes, it enables the correlation of domain movements by providing up to three simultaneous distance measurements with high temporal resolution. Nevertheless, a major challenge lies in the site-specific attachment of three probes to unique positions within the target protein. Here, we propose an orthogonal triple-labeling strategy that is not compromised by native, reactive amino acid functionalities. It combines genetic code expansion and bioorthogonal labeling of two different noncanonical amino acids with an enzymatic self-labeling SNAP tag. We demonstrate its application by establishment of a 3-color sensor on the human metabotropic glutamate receptor 2, a dimeric, multidomain G protein-coupled neuroreceptor, and describe a previously unknown conformational intermediate state using 3-color single molecule FRET.
pubs.acs.org
May 16, 2025 at 8:56 AM