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ACORN2:ACORN概念的新进展。

ACORN2: new developments of the ACORN concept.

作者信息

Dodson E J, Woolfson M M

机构信息

York Structural Biology Department, Department of Chemistry, University of York, Heslington, York, UK.

出版信息

Acta Crystallogr D Biol Crystallogr. 2009 Sep;65(Pt 9):881-91. doi: 10.1107/S0907444909016515. Epub 2009 Aug 14.

Abstract

The density-modification procedures incorporated in ACORN, available in the CCP4 package, have proved to be very successful in solving and refining high-resolution crystal structures from very poor starting sets. These can be calculated from a correctly positioned initial fragment containing between 1 and 8% of the scattering power of the total structure. Improvements of ACORN, reported here and incorporated in the program ACORN2, have lowered the size of the fragment required and examples are given of structures solved with only 0.25% of the scattering power in the fragment, which may be a single atom. Applications of ACORN2 to structures with space group P1 have shown the remarkable property that when the starting point is a pair of equal atoms, or even a single atom placed at the origin, the refinement process breaks the centric nature of the initial phases and converges to phases corresponding to one of the two possible enantiomorphs. Examples are given of the application of ACORN2 to the solution and/or refinement of a number of known trial structures and to the refinement of structures when phases are available either from MAD or from a molecular-replacement model.

摘要

CCP4软件包中的ACORN所采用的密度修正程序,已被证明在从非常差的初始数据开始求解和精修高分辨率晶体结构方面非常成功。这些初始数据可以从一个正确定位的初始片段计算得出,该片段包含整个结构散射能力的1%至8%。本文报道并纳入ACORN2程序的ACORN改进方法,降低了所需片段的大小,并给出了一些仅用片段中0.25%散射能力(可能是单个原子)求解结构的示例。ACORN2在空间群为P1的结构上的应用显示出一个显著特性,即当起始点是一对等同原子,甚至是位于原点的单个原子时,精修过程会打破初始相位的中心性质,并收敛到与两种可能对映体之一相对应的相位。文中给出了ACORN2在一些已知测试结构的求解和/或精修以及在有来自MAD或分子置换模型的相位时对结构进行精修方面的应用示例。

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