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使用具有不同独立迁移率的自旋标记监测DNA动态变化。

Monitoring DNA dynamics using spin-labels with different independent mobilities.

作者信息

Hustedt E J, Kirchner J J, Spaltenstein A, Hopkins P B, Robinson B H

机构信息

Department of Chemistry, University of Washington, Seattle 98195, USA.

出版信息

Biochemistry. 1995 Apr 4;34(13):4369-75. doi: 10.1021/bi00013a028.

Abstract

The electron paramagnetic resonance (EPR) spectra of spin-labeled DNA duplexes, both bound to DEAE-Sephadex and free in solution, have been analyzed. The nitroxide spin-labels are covalently linked to a deoxyuridine residue using either a monoacetylene or diacetylene tether. This difference in tether length produces a dramatic difference in the independent mobility of the nitroxide relative to the DNA. In the case of the monoacetylene tether, the motion of the nitroxide has previously been shown to be tightly coupled to that of the DNA duplex. With the diacetylene tether, there is considerable independent motion of the probe. The diacetylene tether is intended to minimize the possibility of the nitroxide producing a perturbation of the dynamics of DNA. It is demonstrated here that, when coupled via the diacetylene tether, the nitroxide undergoes a rapid uniaxial rotation about the tether. A detailed analysis of the EPR spectrum of duplex DNA in solution, spin-labeled using the diacetylene tether, demonstrates that the motion of the nitroxide can be modeled in terms of this independent uniaxial rotation together with motion of the DNA which is consistent with the global tumbling of the duplex. As was previously found using the monoacetylene tether, there is no evidence of rapid, large-amplitude motions of the base pair in the EPR spectrum of a nitroxide coupled to duplex DNA via the diacetylene tether. This result confirms the small amplitudes of internal motion, local and collective, previously observed in duplex DNA with the monoacetylene-tethered nitroxide.

摘要

对结合于二乙氨基乙基葡聚糖(DEAE - Sephadex)以及游离于溶液中的自旋标记DNA双链体的电子顺磁共振(EPR)谱进行了分析。氮氧化物自旋标记通过单乙炔或双乙炔连接链共价连接至脱氧尿苷残基。这种连接链长度的差异导致氮氧化物相对于DNA的独立移动性产生显著差异。在单乙炔连接链的情况下,先前已表明氮氧化物的运动与DNA双链体的运动紧密耦合。对于双乙炔连接链,探针存在相当大的独立运动。双乙炔连接链旨在使氮氧化物对DNA动力学产生扰动的可能性最小化。此处证明,当通过双乙炔连接链耦合时,氮氧化物围绕连接链进行快速单轴旋转。对使用双乙炔连接链进行自旋标记的溶液中双链DNA的EPR谱进行详细分析表明,氮氧化物的运动可以通过这种独立的单轴旋转以及与双链体整体翻滚一致的DNA运动来建模。正如先前使用单乙炔连接链所发现的那样,在通过双乙炔连接链与双链DNA耦合的氮氧化物的EPR谱中,没有证据表明碱基对存在快速、大幅度的运动。这一结果证实了先前在带有单乙炔连接的氮氧化物的双链DNA中观察到的内部运动(局部和集体)的小幅度。

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