Novel probe helps to detect deep sea biological macromolecules

The phenomenon of chemically synthesized life in extreme deep-sea environment is an international research hotspot in deep-sea science and life science. However, due to the extremely low concentration of organic macromolecules ...

TSU physicists are investigating the effects of radiation on DNA

Scientists from TSU's Laboratory of Experimental High Energy Physics and their colleagues from the University of Bordeaux are studying new ways of modeling the effects of low doses of radiation at the cellular level. For ...

The making of biorelevant nanomaterials

The interactions of biological macromolecules such as nucleic acids, proteins, and polysaccharide–protein conjugates can be mimicked by artificial polyelectrolytes. Such synthetic polyionic complexes are expected to serve ...

In-cell NMR: A new application

The structure of biological macromolecules is critical to understanding their function, mode of interaction and relationship with their neighbours, and how physiological processes are altered by mutations or changes in the ...

The PLOS Comp Biol Macromolecular Structure and Dynamics collection

Living systems are in a state of perpetual motion. Down at the microscopic level, the atoms that make up biological macromolecules are, in the words of Richard Feynman, jiggling and wiggling. These atomic motions are beautifully ...

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