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Histone-DNA contacts in structure/function relationships of nucleosomes as revealed by crosslinking

机译:组蛋白-DNA在结构/功能关系中触点,其通过交联揭示的核体

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We describe studies of histone-DNA contacts in the nucleosome using the method of covalent zero length protein-DNA crosslinking. These studies show that in intact nuclei isolated from different sources the linear sequential arrangement of histone-DNA contacts in the nucleosomal core is essentially the same. However, the relative strength of certain contacts varies and correlates with the level of chromatin activity and condensation. These altered contacts are located in the sharply bent regions of the nucleosomal DNA and are supposed to be sensetive to the structural changes which may occur during nucleosome functions. Studies of the mechanism of these alterations revealed that the difference in strength of these contacts is attributed to the different conformational state of the nucleosomal core and is caused by the stretching of the nucleosomal DNA upon chromatin decondensation during its activation. Histone terminal domains may be involved in this process through posttranslational modifications affecting chromatin condensation. The described localization of the histone H2A C-terminal domain in the nucleosome by crosslinking demonstrates the ability of this methodology to determine the location of histone terminal domains and thereby elucidate their role in nucleosome function. The results of the described experiments suggest that chromatin decondensation may alter the nucleosomal DNA conformation and affect the histone-DNA contacts resulting in a structural transition that may play a role in rendering the nucleosome competent for transcription and/or replication.
机译:我们使用共价零长度蛋白-DNA交联的方法描述核小体中组蛋白-DNA接触的研究。这些研究表明,在不同源中分离的完整核中,核体核心中组蛋白-DNA接触的线性顺序排列基本相同。然而,某些触点的相对强度与染色质活性和缩合的水平变化并相关。这些改变的触点位于核体DNA的急剧弯曲区域中,并且应该对核心功能期间可能发生的结构变化感应感。对这些改变的机制的研究表明,这些触点的强度差异归因于核体核的不同构象状态,并且是由核体DNA在其活化期间脱离染色质解的脱模引起的。通过影响染色质缩合的后翻透修饰,可以参与组蛋白终端域。通过交联的核小体中的组蛋白H2A C-末端域的所描述的定位证明了该方法确定组蛋白末端域的位置的能力,从而阐明它们在核小体功能中的作用。所描述的实验结果表明染色质解囊可以改变核体DNA构象并影响组蛋白-DNA接触,从而产生结构转变,其可能在使核心赋予转录和/或复制的核心作用作用。

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