Sep 2026· Protein Science· Vol 35· 0 citations· 59 references
Medicine
Abstract
Coiled coils are formed by α‐helices winding around each other into superhelical bundles. They are characterized by a specific geometry of interaction, called knobs‐into‐holes, in which residues in the core of the structure mesh regularly along a seam that runs the length of the helices. While these residues are predominantly hydrophobic, hydrophilic residues occur occasionally. In dimeric coiled coils, their sidechains are often sufficiently long to allow the head‐groups to extend out of the core and be solvated by water, but in trimeric and tetrameric coiled coils, they often cannot gain access to solvent and instead point inward, coordinating water molecules and ions along the central axis of the coiled coil. Building on this insight, we have used sequence motifs derived from trimeric autotransporter adhesins to design coiled‐coil sequences that lack hydrophobic sidechains for three or more consecutive heptads. Their crystal structures illustrate the strategies for accommodating extended stretches of hydrophilic residues within the coiled‐coil fold, which are confidently predicted as intrinsically disordered, raising questions about the actual structure of such proteins in their native environment.
Energy decomposition showed that favorable solvation and van der Waals contributions outweighed the electrostatic penalty, indicating that leucine zipper stability reflects a balance of electrostatics, solvation, packing, and positional context.
Macromolecular coil-to-helix transitions simultaneously modify local geometry and persistence length, driving complex changes in overall chain size. Here, we apply the wormlike (persistent) chain model to both coil and helical fragments to examine how the degree of helicity, θ, and average helical fragment length, kh,...
Karthik C Sinha, Alexey A. Gavrilov, Artem M. Rumyantsev· Journal of Chemical Physics· 1 citation
This work presents a minimal coarse-grained molecular dynamics model for the coil-helix transition in polymers. We demonstrate that the addition of a Morse potential to a freely jointed chain with volume and bond potentials is sufficient to reproduce the essential thermodynamic features of the transition. From the simu...
Karthik C Sinha, Alexey A. Gavrilov, Artem M. Rumyantsev· Journal of Chemical Physics· 1 citation
Abiotic foldamers that switch between distinct, well-defined geometries are rare. Here, we report a structurally simple series of oligomers with alternating ortho-phenylene and 2,3-pyrazinylene repeat units. Deconvolution of variable-temperature 1H NMR spectra, with the help of ab initio chemical shift predictions, sho...
Ying Liao, Vipul Batra, G. P. Devkota et al.· Chemistry· 0 citations
Golgins are widely described as long coiled-coil proteins that contribute to the structural organisation and trafficking functions of the Golgi apparatus. Although experimental structures have been determined for a limited number of golgin regions, atomic-level information on their extended coiled-coil segments remains...
Marilia D. O. Silva, R. V. R. Dias, Igor S. Pedriz et al.· bioRxiv· 0 citations
This study investigates the impact of sequence inversion on the structural integrity and thermodynamic stability of the wtRop protein, a prototypical coiled-coil motif. We utilized AI-driven structure prediction (ColabFold) to generate initial models for the unknown rRop sequence, which yielded both parallel and antipa...
Maria Arnittali, E. Markopoulou, V. Harmandaris et al.· Physical Chemistry, Chemical...· 0 citations
A new machine-learning framework aims to improve the success rate of computational protein design while moving away from results that reproduce sequences found in nature.