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Governing function, half‐life and subcellular localization, the 3D structure and dynamics of proteins are in nature constantly changing in a tightly regulated manner to fulfill the physiological and adaptive requirements of the cells. To find evidence for this hypothesis, we applied in‐cell NMR to three folded model proteins and propose that the splitting of cross peaks constitutes an atomic fingerprint...
Governing function, half‐life and subcellular localization, the 3D structure and dynamics of proteins are in nature constantly changing in a tightly regulated manner to fulfill the physiological and adaptive requirements of the cells. To find evidence for this hypothesis, we applied in‐cell NMR to three folded model proteins and propose that the splitting of cross peaks constitutes an atomic fingerprint...
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