Conformational Transitions of Adenylate Kinase: Switching by Cracking
2006; Elsevier BV; Volume: 366; Issue: 5 Linguagem: Inglês
10.1016/j.jmb.2006.11.085
ISSN1089-8638
AutoresPaul C. Whitford, Osamu Miyashita, Yaakov Levy, José N. Onuchic,
Tópico(s)Fungal and yeast genetics research
ResumoConformational heterogeneity in proteins is known to often be the key to their function. We present a coarse grained model to explore the interplay between protein structure, folding and function which is applicable to allosteric or non-allosteric proteins. We employ the model to study the detailed mechanism of the reversible conformational transition of Adenylate Kinase (AKE) between the open to the closed conformation, a reaction that is crucial to the protein's catalytic function. We directly observe high strain energy which appears to be correlated with localized unfolding during the functional transition. This work also demonstrates that competing native interactions from the open and closed form can account for the large conformational transitions in AKE. We further characterize the conformational transitions with a new measure Phi(Func), and demonstrate that local unfolding may be due, in part, to competing intra-protein interactions.
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