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Titlebook: Crystallography in Molecular Biology; Dino Moras,Jan Drenth,Keith Wilson Book 1987 Springer Science+Business Media New York 1987 Terminati

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grew crystals of two different membrane proteins that yielded X-ray diffraction. With the refinements in the crystallization methods, several other groups have now reported crystals from seven membrane proteins (3,4,5,6,7,24), one of which has had its structure elucidated at high resolution (8). Thi
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e cases they can represent limiting factors. This explains the recent interest of molecular biologists and physicists to better understand crystal growth of macromolecules (3). In what follows we will discuss the role of purification in the crystallization of biopolymers and give particular emphasis
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y. During this conference, many new structures presented in oral communications or posters involved the use of a SR source. Indeed, SR and area detectors are the major progress of the last few years in the technology applied to the data collection from macromolecular crystals.
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ypeptide chain of 248 amino acids and a light-absorbing chromophore retinal attached to one of the lysine residues. The protein is present in the purple membrane together with lipid molecules and forms a very well ordered two-dimensional array (Oesterhelt and Stoeckenius, 1971; Blaurock and Stoecken
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The American Dream in Post-War Italy, understanding. Developments in computation and computer graphics have enabled the production and use of powerful tools for molecular modeling, far surpassing the physical models originally used for the purpose. Hardware advances in processor and display technologies have made possible real-time man
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