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Nonnative Interactions Regulate Folding And Switching Of Myristoylated Protein.

Proc Natl Acad Sci U S A.. 2012-10;  109(44):17839 - 17844
Dalit Shental-Bechor, Martin T.J. Smith, Duncan MacKenzie, Aron Broom, Amir Marcovitz, Fadila Ghashut, Chris Go, Fernando Bralha, Elizabeth M. Meiering, and Yaakov Levy. Department of Structural Biology, Weizmann Institute of Science, Rehovot 76100, Israel.
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摘要

We present an integrated experimental and computational study of the molecular mechanisms by which myristoylation affects protein folding and function, which has been little characterized to date. Myristoylation, the covalent linkage of a hydrophobic C14 fatty acyl chain to the N-terminal glycine in a protein, is a common modification that plays a critical role in vital regulated cellular processes by undergoing reversible energetic and conformational switching. Coarse-grained folding simulations for the model pH-dependent actin- and membrane-binding protein hisactophilin reveal that nonnative hydrophobic interactions of the myristoyl with the protein as well as nonnative electrostatic interactions have a prono... More

关键词

coarse-grained simulation; funnel landscape; β-trefoil
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