4.4 Article

Modulation of β-Hairpin Peptide Self-Assembly: A Twenty-Residue Poly-L b-Hairpin Modified Rationally as a Mixed-L, D Hydrolase

Journal

CHEMISTRYSELECT
Volume 1, Issue 9, Pages 2050-2057

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/slct.201600078

Keywords

Enzyme models; Hydrolase enzyme; Protein design; Protein stereochemistry; beta-hairpin aggregation

Funding

  1. Department of Science & Technology, Government of India [09DST028]
  2. IIT Bombay
  3. Science and Engineering Research Board (SERB)
  4. Department of Science & Technology, Government of India of SERB Start-Up Research Grant (Young Scientists) [SB/FT/CS-013/2014]

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The building blocks of protein structure are defined stereo-chemically and have remained frozen to only poly-l alphabet. The D-enantiomer can be explored to diversify shapes of proteins stereochemically and diversity in shape may enhance proteins in the scope of functional design. Illustrating the scope, we describe here design of a hydrolase mimic over twenty Land D-alpha-amino-acid residues. The design is accomplished by mutating canonical poly-L beta-hairpin in a pair of cross-strand residues to D-stereochemical structure to provide a bend to bhairpin structure that allows its elaboration as a monomer freely soluble in water. The aromatic residues were suitably positioned in the designed mimic to stabilize the molecular fold and to bind aromatic substrate using pi-pi interaction. The catalytic triad residues were positioned in close proximity for hydrolysis of aromatic-anchored ligand. The designed peptide variants are proven to bind p-nitrophenyl phosphate using fluorescence studies and hydrolyze p-nitrophenyl acetate using UV-based enzyme kinetic assays. The study thus highlights the role of stereochemistry in design of novel folds with desired function.

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