Binary-FRET for monitoring two FRET reactions, one encoded in the fluorescence lifetime of the donor, the second encoded in its anisotropy #FRET @NIAAAnews
https://t.co/TaH6GrFYuW
Open PhD student positions. Interested in single-molecule live-cell imaging and super-resolution microscopy approaches? Interdisciplinary project with applications in tuberculosis and drug delivery within a large collaborative initiate @CRC1279. More info contact me or apply now.
Scientists use single molecule tracking and find a stress-induced reduction in TDP-43 mobility in the cytoplasm, potentially relevant for TDP-43 3 aggregation. @danzer_karin, @michaelis_jens
https://t.co/5MUHzNBlkJ
Excited to share our latest publication 'Structural dynamics of DNA strand break sensing by PARP-1 at a single-molecule level'
Check it out👇👇👇
https://t.co/ljCCH33czk
Our warmest congratulations to @ThomasVomhof on achieving his PhD👨🎓💐! We are grateful for setting such a great example @BiophysicsUlm for the rest of us!!!
Application period for Biophysics Master @UlmUniversity has started. Apply now to enter an international and interdisciplinary study program with state of the art lab courses and loads of hands on experience, infos at https://t.co/2qdZhYC86H
Do you know how aggregation of ALS related TDP-43 starts? We find mobility loss after stress throughout the cytoplasm and nucleus using live-cell #SingleMolecule tracking and #Superresolution mobility mapping. Great collaboration with @danzer_karin. https://t.co/Mc3CTjyq7p
Are you interested how PARP-1 recognises DNA lesions and how dynamics are influenced by clinically used PARP-1 inhibitors? Great collaboration with Sebastian Eustermann: Structural dynamics of DNA strand break sensing by PARP-1 at a single-molecule level https://t.co/CFxX06crEj
Are you interested how PARP-1 recognises DNA lesions and how dynamics are influenced by clinically used PARP-1 inhibitors? Great collaboration with Sebastian Eustermann: Structural dynamics of DNA strand break sensing by PARP-1 at a single-molecule level https://t.co/CFxX06crEj
This preprint is for the #smFRET people out there. To identify dynamics, we like to put reference lines on the histograms of the molecule-wise FRET efficiency and donor lifetime… yet we never quite explain them in detail. So we wrote a paper on it. https://t.co/uZfqPmW4ub
Happy to share Paint server and homology optimization pipeline (PaintSHOP), an interactive platform for the design of FISH experiments. PaintSHOP democratizes and standardizes designing complex probe sets for the oligo FISH community. https://t.co/O4h8k5p7T4
Check out our work on antimicrobial peptide delivery via mesoporous silica nanoparticles against intracellular Mtb recently published in Advanced Healthcare Materials. Many thanks to our great collaborators from @crc1279! @Michaelis_Lab @AdvSciNews https://t.co/JkAiKaR168
Another metabolite regulating chromatin and transcription – we cracked the mechanism of action behind histone succinylation ! - excited to share one of our latest papers from https://t.co/lEKEDnmTJJ @EMBOReports@michaelis_jens
https://t.co/oJpyDCSHm1
Excellent work from the Craggs (@Craggs_Lab ) & Ebenstein (@hagenom) groups - Multi-modal Single-molecule Imaging with Continuously Controlled Spectral-resolution (CoCoS) Microscopy https://t.co/yu1hSn7JNr
1/6 We are delighted to present our work on pulsed interleaved MINFLUX. p-MINFLUX is a simplified implementation of the MINFLUX concept that provides 1-2 nm localization precision and access to lifetime information! Great collaboration with @TinnefeldLab!
https://t.co/qBaPH9RfWw
Hows does the coronavirus attach to your cells? Our new magnetic tweezers assay shows how its Spike protein binds stably to the human receptor ACE2 - even under external forces. Very excited to share the preprint! https://t.co/XWxaSZqY9P