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Yoriko Iwata

Publications and source records attributed to Yoriko Iwata.

2 recordsLinked to original sources

Conformational analysis of globomycin with a signal peptidase II inhibitory activity using molecular dynamics simulation.

Globomycin (1), a 19-membered cyclic depsipeptide, exhibited an antibiotic activity against gram-negative bacteria by inhibiting signal peptidase II in the cytoplasmic membrane. Although only one conformation of 1 was observed for the crystal structure, it was revealed by 1H NMR spectroscopic analysis that 1 exists as a mixture of two rotational isomers in solution (CDCl3 and CD3OD). A conformational analysis of 1 was, therefore, performed by high-temperature molecular dynamics simulation in combination with 1H NMR analysis to elucidate the conformations in solution. The relative ratio of the major and minor isomers present, which differs depending on the solvent, was then derived from their relative energy differences obtained in the conformational analysis. The difference in the relative ratios corresponded with that calculated from the 1H NMR analysis. Finally, the predicted conformations in solution were compared with that of the X-ray crystal structure to find local and global differences that characterize these conformations.

Aspartic Acid Endopeptidases↗

An efficient method for reconstructing protein backbones from alpha-carbon coordinates.

We present an approach for building protein backbones from alpha-carbon (Calpha) coordinates. The approach is analytical and based on the information of favored regions in the Ramachandran map. The backbone construction consists of three parts: prediction of (phi, psi) angle pairs from the Calpha trace, generation of atomic coordinates with these (phi, psi) angles, and refinement by subsequent energy minimization. Tests on several known protein structures show that the root mean square deviations in reconstructed backbones are 0.25-0.48 A for coordinates and 14-34 degrees for phi and psi angles. The results indicate that our method is one of the best methods proposed in terms of accuracy. It has also been revealed that the approach is not only robust against errors in Calpha coordinates but is also capable of providing equivalent or more reasonable models compared to other known methods. Furthermore, backbone structures were found to be built accurately by using the (phi, psi) angles from a different structure of the same protein. This suggests that the approach could be effective and useful in homology modeling studies.

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