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Hoechst 33258和溴化乙锭与组蛋白1-DNA凝聚物的相互作用。

Interaction of Hoechst 33258 and ethidium with histone1-DNA condensates.

作者信息

Sarkar Rupa, Pal Samir Kumar

机构信息

Unit for Nano Science & Technology, Department of Chemical, Biological & Macromolecular Sciences, S. N. Bose National Centre for Basic Sciences, Salt Lake, Kolkata, India.

出版信息

Biomacromolecules. 2007 Nov;8(11):3332-9. doi: 10.1021/bm700690p. Epub 2007 Sep 29.

Abstract

We report structural and dynamical aspects of DNAs from various sources including synthetic oligonucleotides in bulk buffer and as a complex with histone1 (H1). High-resolution transmission electron microscopic (HRTEM) studies reveal the structural change of the DNAs upon complexation with H1 leading to formation of compact-globular and hollow-toroidal particles. In order to explore the functionality of ligand binding of the DNAs and their complexes with H1, we have used two biologically common fluorescent probes Hoechst 33258 (H33258) and Ethidium (EB) as model ligands. Picosecond resolved fluorescence and polarization gated anisotropy studies examined that the minor groove binding of H33258 to the genomic DNA-H1 complex remains almost unaltered. However, the intercalative interaction of EB with the DNA in the complex is severely perturbed compared to that with the DNA in bulk buffer. Time-dependent solvochromic effect of the probe H33258 further elucidates the dynamical solvation, which is reflective of the overall environmental relaxation of the DNAs upon condensation by H1. We have also performed circular dichroism (CD) studies on the DNAs and their complexes with H1, which reveal the change in conformation of the DNAs in the complexes. Our studies in the ligand-binding mechanisms of the DNA-H1 complex are important to understand the mechanism of drug binding to linker DNA in condensed chromatin.

摘要

我们报告了来自各种来源的DNA的结构和动力学方面,包括在大量缓冲液中的合成寡核苷酸以及与组蛋白1(H1)形成的复合物。高分辨率透射电子显微镜(HRTEM)研究揭示了DNA与H1复合时的结构变化,导致形成紧密球状和空心环形颗粒。为了探索DNA及其与H1的复合物的配体结合功能,我们使用了两种生物学上常见的荧光探针Hoechst 33258(H33258)和溴化乙锭(EB)作为模型配体。皮秒分辨荧光和偏振门控各向异性研究表明,H33258与基因组DNA-H1复合物的小沟结合几乎保持不变。然而,与在大量缓冲液中的DNA相比,EB与复合物中DNA的嵌入相互作用受到严重干扰。探针H33258的时间依赖性溶剂化效应进一步阐明了动态溶剂化,这反映了DNA在被H1凝聚时的整体环境弛豫。我们还对DNA及其与H1的复合物进行了圆二色性(CD)研究,揭示了复合物中DNA构象的变化。我们对DNA-H1复合物配体结合机制的研究对于理解药物与浓缩染色质中连接DNA的结合机制很重要。

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