📜 just out in @angew_chem, not much changed wrt the preprint. https://t.co/P42eidZp2G Many thanks to alumna Laura and the Bennati Lab @mpi_nat, @AckermannKatrin for your excellent efforts and @StAndrewsChem for support. 🎉 #epr#esr
Pulsed EPR Methods in the Angstrom to Nanometre Scale Shed Light on the Conformational Flexibility of a Fluoride Riboswitch (Bela E. Bode and co-workers) @Bela_Bode; @StAndrewsChem#openaccess https://t.co/AWd1RuEHvm
This week we are @rockymtnconf#EPR. Great atmosphere, talks, science and friendship. IES Medals awarded to Professors Hiroshi Hirata and Christiane Timmel, congratulations!
Funded by the Boehringer Ingelheim Foundation, we have PhD and Postdoc openings focused on pulsed EPR/ESR spectroscopy and cryo-EM of membrane protein complexes. Join us in Berlin, one of the most scientifically and socially vibrant cities! Please DM for more details. Pls RT!
Huge congratulations to Prof. David Cole-Hamilton @univofstandrews on being elected an Honorary Fellow of the Royal Society of Chemistry @RoySocChem. Do watch the periodic table at the end of the video.
🥁 Thus the RIDME/EPR cluedo suggests that the three main sites for copper(II) form a triangle with vertices at copper-ions coordinated to H3, H9 and H288. Especially the last one was a surprise. 🧲
Just accepted in @DaltonTrans 📜CW and pulse EPR to identify native copper(II) binding sites in human serum albumin 🩸 https://t.co/zIXsOeagZF fund project with Alan and his student Dongmei from @StAndMedicine and of course led by @AckermannKatrin@StAndrewsChem
Using Dongmei's and Alan's histidine knockout mutants and RIDME distance measurements we could show that of two dominant distances one is diminished in H3A and H9A each. However, H288A only leaves a short distance populations. H67A and H247 show no effect.
Very happy and proud for this one!
We employed γ-irradiated molecules for solid state and dissolution DNP studies looking at 1Hs and 13C. #dnp#nmr#epr
Many thanks to @lab_lucio 🧡 at the @WeizmannScience
https://t.co/FaWdebljrY
. @NatureComms (open) Overhauser enhanced liquid state NMR in one and two dimensions, corresponding Marina Bennati @mpi_nat https://t.co/mcju1G0wjs #NMRchat#NMR#DNPNMR 🧲
Out now🎉:
Spin–Lattice Relaxation and Spin–Phonon Coupling of ns1 Metal Ions at the Surface
Unusual oxidation state -> unusual electron configuration -> small spin-phonon coupling -> looooooong relaxation times!
The power of surfaces!
J Phys Chem Lett https://t.co/NLerrnHG1C