Department of Chemistry, New York University, 100 Washington Square East, New York, NY 10003, USA.
Nucleic Acids Res. 2012 Oct;40(18):8803-17. doi: 10.1093/nar/gks600. Epub 2012 Jul 11.
Monte Carlo simulations of a mesoscale model of oligonucleosomes are analyzed to examine the role of dynamic-linker histone (LH) binding/unbinding in high monovalent salt with divalent ions, and to further interpret noted chromatin fiber softening by dynamic LH in monovalent salt conditions. We find that divalent ions produce a fiber stiffening effect that competes with, but does not overshadow, the dramatic softening triggered by dynamic-LH behavior. Indeed, we find that in typical in vivo conditions, dynamic-LH binding/unbinding reduces fiber stiffening dramatically (by a factor of almost 5, as measured by the elasticity modulus) compared with rigidly fixed LH, and also the force needed to initiate chromatin unfolding, making it consistent with those of molecular motors. Our data also show that, during unfolding, divalent ions together with LHs induce linker-DNA bending and DNA-DNA repulsion screening, which guarantee formation of heteromorphic superbeads-on-a-string structures that combine regions of loose and compact fiber independently of the characteristics of the LH-core bond. These structures might be important for gene regulation as they expose regions of the DNA selectively. Dynamic control of LH binding/unbinding, either globally or locally, in the presence of divalent ions, might constitute a mechanism for regulation of gene expression.
对寡核小体介观模型的蒙特卡罗模拟进行了分析,以研究动态连接组蛋白 (LH) 在高单价盐与二价离子结合/解吸中的作用,并进一步解释在单价盐条件下动态 LH 引起的染色质纤维软化现象。我们发现,二价离子会产生纤维变硬的效果,与动态 LH 行为引发的剧烈软化效果竞争,但不会掩盖它。事实上,我们发现,在典型的体内条件下,与刚性固定的 LH 相比,动态 LH 的结合/解吸大大降低了纤维的硬度(通过弹性模量来衡量,降低了近 5 倍),而且还降低了引发染色质展开所需的力,这与分子马达的行为一致。我们的数据还表明,在展开过程中,二价离子与 LHs 一起诱导连接 DNA 弯曲和 DNA-DNA 排斥屏蔽,这保证了异质超珠串结构的形成,该结构将松散和紧密纤维的区域结合在一起,而与 LH 核心键的特性无关。这些结构可能对基因调控很重要,因为它们可以选择性地暴露 DNA 区域。在存在二价离子的情况下,全局或局部地动态控制 LH 的结合/解吸可能是基因表达调控的一种机制。