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Magnetic resonance makes the invisible visible by Staff Writers Vienna, Austria (SPX) May 18, 2022
A small group of researchers including Dennis Kurzbach from the Faculty of Chemistry of the University of Vienna just published in Nature Protocols an advanced NMR (Nuclear Magnetic Resonance) method to monitor fast and complicated biomolecular events such as protein folding. For example, protein folding was long considered as one of the great mysteries of modern research. This crucial process during which amino acid chains adopt a 3D structure and functionality, takes place within milliseconds. Being this fast, protein folding events could often not be characterized by NMR spectroscopy; the standard method for studying molecular structures. Employing hyperpolarized water, researchers have now developed a method that dramatically enhances the signals of the proteins, nucleic acids, and other biomolecules. This renders monitoring of processes such as protein folding possible.
Enabling real-time NMR With hyperpolarization methods, more precisely dissolution DNP (D-DNP), a signal enhancement of over 10,000-fold is possible. "The hyperpolarized water acts as a booster for the NMR signals of a protein during the measurement. The hydrogen nuclei of the hyperpolarized water are exchanged with those of the proteins, thus transferring the signal strength to the latter," says Dennis Kurzbach from the Institute of Biological Chemistry and deputy head of the NMR Centre of the Faculty of Chemistry. With the new method, the researchers can record an NMR spectrum every 100 milliseconds and use it to track the 3-D coordinates of individual amino acids and how they change over time. "This allows us to monitor processes that occur in milliseconds and distinguish individual atoms," says chemist Dennis Kurzbach, who focuses in his research on developing new methods.
Increasing use of NMR for protein analyses In addition, they present six examples for method application, including the observation of protein folding or even the interactions of RNA (nucleic acids) and RNA-binding proteins as the basis for gene expressions in the cell. According to the scientists, the new method can be used for specific studies of RNA, DNA and polypeptides, especially when signal enhancement reaches the 'magic' number of 1,000-fold. An NMR spectrometer equipped with a hyperpolarization prototype is a prerequisite for NMR boosted by hyperpolarized water. However, this kind of infrastructure is not common yet. The Faculty of Chemistry of the University of Vienna is equipped with a DDNP-NMR device since 2020, which has been constructed by Dennis Kurzbach based on an ERC Starting Grant.
Research Report:Hyperpolarized water as universal sensitivity booster in biomolecular NMR
Second endangered cheetah cub dies in Iran: state media Tehran (AFP) May 18, 2022 The second of three Asiatic cheetah cubs born in captivity in Iran has died in a blow to conservation efforts for the critically endangered subspecies, state media reported Wednesday. "The cause of death of the cub is being investigated and the result will be announced after the post mortem," environment department official Hassan Akbari told state news agency IRNA. The announcement came just two weeks after a first cub from the litter died. The cause of death was established as congenital m ... read more
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