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Exploiting large non-isomorphous differences for phase determination of a G-segment invertase–DNA complex

机译:利用大的非同构差异来确定G段转化酶-DNA复合物的相

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摘要

Crystals of the G-segment invertase in complex with a 37-base-pair asymmetric DNA duplex substrate had an unusually high solvent content of 88% and diffracted to a maximal resolution of about 5.0 Å. These crystals exhibited a high degree of non-isomorphism and anisotropy, which presented a serious challenge for structure determination by isomorphous replacement. Here, a procedure of cross-crystal averaging is described that uses large non-isomorphous crystallographic data with a priori information of an approximate molecular boundary as determined from a minimal amount of experimental phase information. Using this procedure, high-quality experimental phases were obtained that have enabled it to be shown that the conformation of the bound substrate DNA duplex significantly differs from those of substrates bound in other serine recombinase–DNA complexes.
机译:与37个碱基对的不对称DNA双链体底物形成复合物的G段转化酶晶体异常高的溶剂含量为88%,衍射至最大分离度约为5.0Å。这些晶体表现出高度的非同构性和各向异性,这对通过同构置换的结构确定提出了严峻的挑战。在此,描述了跨晶平均的过程,该过程使用具有从最小量的实验相信息确定的近似分子边界的先验信息的大的非同晶晶体数据。使用此程序,获得了高质量的实验阶段,已证明结合的底物DNA双链体的构象与其他丝氨酸重组酶-DNA复合物中结合的底物的构象显着不同。

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