首页> 外文OA文献 >Base Orientation of Second DNA in RecA·DNA Filaments. Analysis by combination of linear dichroism and small angle neutron scattering in flow-oriented solution
【2h】

Base Orientation of Second DNA in RecA·DNA Filaments. Analysis by combination of linear dichroism and small angle neutron scattering in flow-oriented solution

机译:RecA·DNA细丝中第二个DNA的碱基方向。线性二向色性与小角度中子散射相结合的流动方向分析

摘要

To gain insight into the mechanism of pairing two complementary DNA strands by the RecA protein, we have determined the nucleobase orientation of the first and the second bound DNA strands in the RecA·DNA filament by combined measurements of linear dichroism and small angle neutron scattering on flow-oriented samples. An etheno-modified DNA, poly(depsilon A) was adapted as the first DNA and an oligo(dT) as the second DNA, making it possible to distinguish between the linear dichroism signals of the two DNA strands. The results indicate that binding of the second DNA does not alter the nucleobase orientation of the first bound strand and that the bases of the second DNA are almost coplanar to the bases of the first strand although somewhat more tilted (60 degrees relative to the fiber axis compared with 70 degrees for the first DNA strand). Similar results were obtained for the RecA·DNA complex formed with unmodified poly(dA) and oligo(dT). An almost coplanar orientation of nucleobases of two DNA strands in a RecA-DNA filament would facilitate scanning for, and recognition of, complementary base sequences. The slight deviation from co-planarity could increase the free energy of the duplex to facilitate dissociation in case of mismatching base sequences.
机译:为了深入了解RecA蛋白将两条互补DNA链配对的机理,我们通过结合线性二色性和小角度中子散射测量,确定了RecA·DNA细丝中第一条和第二条结合的DNA链的核碱基方向。以流动为导向的样本。乙烯修饰的DNA,聚(双链烯A)被适配为第一个DNA,而oligo(dT)被适配为第二个DNA,从而可以区分两条DNA链的线性二色性信号。结果表明,第二条DNA的结合不会改变第一条结合链的核碱基方向,第二条DNA的碱基与第一条链的碱基几乎共面,尽管倾斜的程度更大(相对于纤维轴60度)而第一条DNA链则为70度)。由未修饰的poly(dA)和oligo(dT)形成的RecA·DNA复合物获得了相似的结果。 RecA-DNA细丝中两条DNA链的核碱基几乎共面取向,这将有助于扫描和识别互补碱基序列。与共面性的轻微偏离会增加双链体的自由能,从而在碱基序列不匹配的情况下促进解离。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号