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Assessing dimerisation degree and cooperativity in a biomimetic small-molecule model by pulsed EPR

Pulsed electron paramagnetic resonance (EPR) spectroscopy is gaining increasing importance as a complementary biophysical technique in structural biology. Here, we describe the synthesis, optimisation, and EPR titration studies of a spin-labelled terpyridine Zn(II) complex serving as a small-molecul...

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Published in:Chemical communications (Cambridge, England) England), 2015-03, Vol.51 (25), p.5257-5260
Main Authors: Ackermann, K, Giannoulis, A, Cordes, D B, Slawin, A M Z, Bode, B E
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description Pulsed electron paramagnetic resonance (EPR) spectroscopy is gaining increasing importance as a complementary biophysical technique in structural biology. Here, we describe the synthesis, optimisation, and EPR titration studies of a spin-labelled terpyridine Zn(II) complex serving as a small-molecule model system for tuneable dimerisation.
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ispartof Chemical communications (Cambridge, England), 2015-03, Vol.51 (25), p.5257-5260
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source Royal Society of Chemistry:Jisc Collections:Royal Society of Chemistry Read and Publish 2022-2024 (reading list)
subjects Biology
Biomimetic Materials - chemical synthesis
Biomimetic Materials - chemistry
Biomimetics
Crystallography, X-Ray
Electron paramagnetic resonance
Electron Spin Resonance Spectroscopy
Mathematical models
Models, Molecular
Molecular Structure
Optimization
Organometallic Compounds - chemical synthesis
Organometallic Compounds - chemistry
Pyridines - chemistry
Spectroscopy
Synthesis
Titration
Zinc - chemistry
title Assessing dimerisation degree and cooperativity in a biomimetic small-molecule model by pulsed EPR
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