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- W2081361691 abstract "In the effort to understand living cells, knowledge about molecular details competes with knowledge of collective properties of large systems of molecules. On the one hand, molecular structures and interactions strongly suggest how the cell's molecular machines work and give rise to rich metabolic diagrams. On the other hand, subtle collective properties such as the entropy and free energy represent driving forces for chemical reactions, self-assembly, and phase transitions within cells. In a recent issue of PNAS, McManus et al. (1) report a dramatic advance in understanding the differing consequences of protein structure for crystallization and solution clouding. Their work straddles the structural and collective viewpoints and has implications for several current scientific efforts." @default.
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- W2081361691 date "2007-11-27" @default.
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- W2081361691 title "Protein anisotropy turns solubility on its head" @default.
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- W2081361691 doi "https://doi.org/10.1073/pnas.0708631104" @default.
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