Related Experiment Video
Updated: Aug 6, 2026

Investigating Protein Sequence-structure-dynamics Relationships with Bio3D-web
Published on: July 16, 2017
(4,2)D Projection--reconstruction experiments for protein backbone assignment: application to human carbonic
Ronald A Venters1, Brian E Coggins, Doug Kojetin
1Duke University NMR Center, Duke University Medical Center, Durham, North Carolina 27710, USA. venters@windsurf.mc.duke.edu
Abstract:
Projection-reconstruction NMR experiments have been shown to significantly reduce the acquisition time required to obtain protein backbone assignment data. To date, this concept has only been applied to smaller (15)N/(13)C-labeled proteins. Here, we show that projection-reconstruction NMR techniques can be extended to larger protonated and perdeuterated proteins. We present a suite of (4,2)D triple-resonance experiments for protein backbone assignment and a Hybrid Backprojection/Lower-Value algorithm for reconstructing data with relatively weak signal-to-noise ratios. In addition, we propose a sampling theorem and discuss its implication on the choice of projection angles. We demonstrate the efficacy of this approach using the 29 kDa protein, human carbonic anhydrase II and the 30 kDa protein, calbindin D(28K).

