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Our platform is built around a computational method for encapsulating the function of biomolecules based on precise chemical models.
on protein dynamics, MD has become the by foremost well established, computational technique to investigate structure and function of biomolecules and their respective complexes and interactions.
This new strategy has been catalyzed by recent advances in understanding the structure and function of biomolecules that coordinate the complex cellular processes that ultimately lead to tissue development and regeneration.
AFM measurements can be carried out in buffer solution in a physiological medium, which is crucial to study the structure and function of biomolecules, also allowing studying them at work.
Our ability to alter and control the structure and function of biomolecules, and of proteins in particular, will be of utmost importance in order to understand their respective biological roles in complex systems such as living organisms.
The construction of nanodevices coupled with an integrated real-time detection system for evaluation of the function of biomolecules in biological processes, and enzymatic reaction kinetics occurring at the confined space or interface is a significant challenge.
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Hyeon, C. & Thirumalai, D. Capturing the essence of folding and functions of biomolecules using coarse-grained models.
Suppression of unfavorable biological response on the interface is most important for understanding real functions of biomolecules on the surface.
Fig. 14 Overview of biomolecular engineering for enhancing, altering and multiplexing functions of biomolecules, and its application to various fields.
The increasing availability of data on characteristics and functions of biomolecules and small chemical compounds enables researchers to better understand various chemical, physical and biological processes or activities with the use of machine learning methods [1 7].
These functions of biomolecules, especially nucleic acids and proteins, can be manipulated by nucleic acid (DNA/RNA) engineering, gene engineering, protein engineering, chemical and enzymatic conjugation technologies and linker engineering.
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