For each citation that was shared on social media (LinkedIn, Facebook, or Twitter) with the “@GenScript” tag, the author will be rewarded with a $10 Amazon gift card or 2,000 GS points.

Mutation Of Conserved Histidines Alters Tertiary Structure And Nanomechanics Of Consensus Ankyrin Repeats.

J Biol Chem.. 2012-06;  287(23):19115-21
Lee W, Strümpfer J, Bennett V, Schulten K, Marszalek PE. Center for Biologically Inspired Materials and Material Systems and Department of Mechanical Engineering and Materials Science, Duke University, Durham, North Carolina 27708, USA.
Products/Services Used Details Operation

Abstract

The conserved TPLH tetrapeptide motif of ankyrin repeats (ARs) plays an important role in stabilizing AR proteins, and histidine (TPLH)-to-arginine (TPLR) mutations in this motif have been associated with a hereditary human anemia, spherocytosis. Here, we used a combination of atomic force microscopy-based single-molecule force spectroscopy and molecular dynamics simulations to examine the mechanical effects of His → Arg substitutions in TPLH motifs in a model AR protein, NI6C. Our molecular dynamics results show that the mutant protein is less mechanically stable than the WT protein. Our atomic force microscopy results indicate that the mechanical energy input necessary to fully unfold the mutant protein ... More

Keywords

Atomic Force Microscopy; Molecular Dynamics; Protein Folding; Protein Stability; Single-molecule Biophysics