5lo2 Citations

Engineering protein stability with atomic precision in a monomeric miniprotein.

Nat Chem Biol 13 764-770 (2017)
Related entries: 5lo3, 5lo4

Cited: 20 times
EuropePMC logo PMID: 28530710

Abstract

Miniproteins simplify the protein-folding problem, allowing the dissection of forces that stabilize protein structures. Here we describe PPα-Tyr, a designed peptide comprising an α-helix buttressed by a polyproline II helix. PPα-Tyr is water soluble and monomeric, and it unfolds cooperatively with a midpoint unfolding temperature (TM) of 39 °C. NMR structures of PPα-Tyr reveal proline residues docked between tyrosine side chains, as designed. The stability of PPα is sensitive to modifications in the aromatic residues: replacing tyrosine with phenylalanine, i.e., changing three solvent-exposed hydroxyl groups to protons, reduces the TM to 20 °C. We attribute this result to the loss of CH-π interactions between the aromatic and proline rings, which we probe by substituting the aromatic residues with nonproteinogenic side chains. In analyses of natural protein structures, we find a preference for proline-tyrosine interactions over other proline-containing pairs, and observe abundant CH-π interactions in biologically important complexes between proline-rich ligands and SH3 and similar domains.

Reviews - 5lo2 mentioned but not cited (1)

Articles - 5lo2 mentioned but not cited (1)



Reviews citing this publication (3)

  1. Secondary Forces in Protein Folding. Newberry RW, Raines RT. ACS Chem Biol 14 1677-1686 (2019)
  2. The fourth wave of biocatalysis is approaching. Bornscheuer UT. Philos Trans A Math Phys Eng Sci 376 20170063 (2018)
  3. Understanding a protein fold: The physics, chemistry, and biology of α-helical coiled coils. Woolfson DN. J Biol Chem 299 104579 (2023)

Articles citing this publication (15)