Author:
Yoshimura Masato,Chen Nai-Chi,Guan Hong-Hsiang,Chuankhayan Phimonphan,Lin Chien-Chih,Nakagawa Atsushi,Chen Chun-Jung
Abstract
Molecular averaging, including noncrystallographic symmetry (NCS) averaging, is a powerful method forab initiophase determination and phase improvement. Applications of the cross-crystal averaging (CCA) method have been shown to be effective for phase improvement after initial phasing by molecular replacement, isomorphous replacement, anomalous dispersion or combinations of these methods. Here, a two-step process for phase determination in the X-ray structural analysis of a new coat protein from a betanodavirus,Grouper nervous necrosis virus, is described in detail. The first step isab initiostructure determination of theT= 3 icosahedral virus-like particle using NCS averaging (NCSA). The second step involves structure determination of the protrusion domain of the viral molecule using cross-crystal averaging. In this method, molecular averaging and solvent flattening constrain the electron density in real space. To quantify these constraints, a new, simple and general indicator, free fraction (ff), is introduced, where ff is defined as the ratio of the volume of the electron density that is freely changed to the total volume of the crystal unit cell. This indicator is useful and effective to evaluate the strengths of both NCSA and CCA. Under the condition that a mask (envelope) covers the target molecule well, an ff value of less than 0.1, as a new rule of thumb, gives sufficient phasing power for the successful construction of new structures.
Publisher
International Union of Crystallography (IUCr)
Cited by
4 articles.
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