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Pro. Natl. Acid. Sci. USA Vol. 93, pp. 7496-7501, July 1996 Biochemistry Crystal structure of D-amino acid oxidase: A case of active site mirror-image convergent evolution with flavocytochrome b2
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How to fill out crystal structure of d-amino?

01
Start by obtaining the necessary data on the composition and arrangement of atoms in the d-amino molecule. This information can be derived from experimental studies using techniques like X-ray crystallography or nuclear magnetic resonance (NMR) spectroscopy.
02
Analyze the obtained data to determine the positions of individual atoms within the crystal lattice. This involves interpreting the diffraction pattern from the X-ray crystallography or the chemical shift values from NMR spectroscopy.
03
Use specialized software or programs to generate a three-dimensional model of the crystal structure based on the determined atomic positions. This model should accurately represent the spatial arrangement of atoms and their connectivity within the d-amino molecule.
04
Validate the generated crystal structure model by comparing it with known crystallographic data, if available, or by applying various statistical parameters to assess its quality and reliability.
05
Document and publish the crystal structure of d-amino in scientific journals or databases, ensuring that the information is made accessible to the scientific community for further research and understanding of the molecule.

Who needs crystal structure of d-amino?

01
Researchers in the field of chemistry and biochemistry who are studying the properties and behavior of d-amino acids.
02
Scientists interested in understanding the mechanisms of enzymatic reactions involving d-amino acids, as the crystal structure can provide insights into the catalytic sites and binding interactions.
03
Pharmaceutical companies and drug discovery researchers who are developing drugs or therapeutic agents targeting d-amino acids or related molecules. The crystal structure can aid in rational drug design and optimization.
04
Students and educators in universities and academic institutions who are teaching or learning about protein structure and function, as d-amino acids can be found in certain peptides and proteins.
Overall, the crystal structure of d-amino is important for advancing knowledge in various scientific fields and for contributing to the development of new drugs or therapies.

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