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Biomolecular Visualization

/ˌbaɪ.oʊˌmoʊˈlɛk.jə.lər ˌvɪʒ.u.ə.lɪˈzeɪ.ʃən/noun
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Biomolecular visualization encompasses the methods and technologies used to generate detailed images of biological molecules, such as proteins and DNA, at the atomic level. This technique not only reveals the intricate structures and interactions of these molecules but also plays a crucial role in modern research for applications like drug design and disease understanding, making it an essential tool in cutting-edge biology.

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The first high-resolution visualization of a protein structure, myoglobin, was accomplished in 1959 by British scientist John Kendrew using X-ray crystallography, which revealed its 3D fold and earned him a Nobel Prize. This milestone has since inspired the Protein Data Bank, which now holds over 180,000 structures, revolutionizing fields from medicine to biotechnology by enabling virtual drug testing on digital models.

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