Search PubMed⌕ Search

Biomedical subjects

Natalia Lunina

Publications and source records attributed to Natalia Lunina.

3 recordsLinked to original sources

Ab initio phasing based on topological restraints: automated determination of the space group and the number of molecules in the unit cell.

The connectivity-based phasing method has been demonstrated to be capable of finding molecular packing and envelopes even for difficult cases of structure determination, as well as of identifying, in favorable cases, secondary-structure elements of protein molecules in the crystal. This method uses a single set of structure factor magnitudes and general topological features of a crystallographic image of the macromolecule under study. This information is expressed through a number of parameters. Most of these parameters are easy to estimate, and the results of phasing are practically independent of these parameters when they are chosen within reasonable limits. By contrast, the correct choice for such parameters as the expected number of connected regions in the unit cell is sometimes ambiguous. To study these dependencies, numerous tests were performed with simulated data, experimental data and mixed data sets, where several reflections missed in the experiment were completed by computed data. This paper demonstrates that the procedure is able to control this choice automatically and helps in difficult cases to identify the correct number of molecules in the asymmetric unit. In addition, the procedure behaves abnormally if the space group is defined incorrectly and therefore may distinguish between the rotation and screw axes even when high-resolution data are not available.

Algorithms↗

Connectivity-based ab initio phasing: from low resolution to a secondary structure.

The connectivity-based phasing method currently allows ab initio determination of phases for several hundred reflections. In the case of large macromolecular crystals, these reflections correspond to a very low resolution and the structural information deduced essentially consists of the molecular packing and an approximate molecular envelope. However, when the unit cell is relatively small, such a phasing procedure can produce phases such that secondary-structure elements can be identified in the corresponding maps. In the case of the pheromone Er-1, all three alpha-helices present are seen in the ab initio phased maps. In the case of protein G, not only the alpha-helix but also some individual beta-strands are distinguishable.

Cluster Analysis↗

Connectivity-based ab initio phasing at different solvent levels.

The connectivity-based phasing method has been applied independently to three neutron diffraction data sets obtained from the same crystal of tRNA(Asp)-aspartyl-tRNA synthetase complex but at different concentrations of D(2)O/H(2)O, thus masking different components of the crystal. The obtained low-resolution images correlate perfectly with the solvent level.

Aspartate-tRNA Ligase↗