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Direct observations of shifts in the ?-sheet register of a protein-peptide complex using explicit solvent simulations.


ABSTRACT: Using explicit solvent molecular dynamics simulations, we were able to obtain direct observations of shifts in the hydrogen-bonding register of an intermolecular ?-sheet protein-peptide complex. The ?-sheet is formed between the FHA domain of cancer marker protein Ki67 (Ki67FHA) and a peptide fragment of the hNIFK signaling protein. Potential encounter complexes of the Ki67FHA receptor and hNIFK peptide are misregistered states of the ?-sheet. Rearrangements of one of these misregistered states to the native state were captured in three independent simulations. All three rearrangements occurred by a common mechanism: an aromatic residue of the peptide (F263) anchors into a transient hydrophobic pocket of the receptor to facilitate the formation of native hydrogen bonds. To our knowledge, these simulations provide the first atomically detailed visualizations of a mechanism by which nature might correct for errors in the alignment of intermolecular ?-sheets.

SUBMITTER: Panteva MT 

PROVIDER: S-EPMC3149256 | biostudies-literature | 2011 May

REPOSITORIES: biostudies-literature

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Direct observations of shifts in the β-sheet register of a protein-peptide complex using explicit solvent simulations.

Panteva Maria T MT   Salari Reza R   Bhattacharjee Monica M   Chong Lillian T LT  

Biophysical journal 20110501 9


Using explicit solvent molecular dynamics simulations, we were able to obtain direct observations of shifts in the hydrogen-bonding register of an intermolecular β-sheet protein-peptide complex. The β-sheet is formed between the FHA domain of cancer marker protein Ki67 (Ki67FHA) and a peptide fragment of the hNIFK signaling protein. Potential encounter complexes of the Ki67FHA receptor and hNIFK peptide are misregistered states of the β-sheet. Rearrangements of one of these misregistered states  ...[more]

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