Widlak Piotr, Kalinowska Magdalena, Parseghian Missag H, Lu Xu, Hansen Jeffrey C, Garrard William T
Department of Molecular Biology, University of Texas Southwestern Medical Center, Dallas, Texas 75235, USA.
Biochemistry. 2005 May 31;44(21):7871-8. doi: 10.1021/bi050100n.
The apoptotic nuclease, DNA fragmentation factor (DFF40/CAD), is primarily responsible for internucleosomal DNA cleavage during the terminal stages of programmed cell death. Previously, we demonstrated that histone H1 greatly stimulates naked DNA cleavage by this nuclease. Here, we investigate the mechanism of this stimulation with native and recombinant mouse and human histone H1 species. Using a series of truncation mutants of recombinant histone H1-0, we demonstrate that the H1 C-terminal domain (CTD) is responsible for activation of DFF40/CAD. We show further that the intact histone H1-0 CTD and certain synthetic CTD fragments bind to DFF40/CAD and confer upon it an increased ability to bind to DNA. Interestingly, we find that each of the six somatic cell histone H1 isoforms, whose CTDs differ significantly in primary sequence but not amino acid composition, equally activate DFF40/CAD. We conclude that the interactions identified here between the histone H1 CTD and DFF40/CAD target and activate linker DNA cleavage during the terminal stages of apoptosis.
凋亡核酸酶,即DNA片段化因子(DFF40/CAD),在程序性细胞死亡的终末阶段主要负责核小体间DNA的切割。此前,我们证明组蛋白H1能极大地刺激这种核酸酶对裸露DNA的切割。在此,我们利用天然和重组的小鼠及人类组蛋白H1研究这种刺激的机制。通过一系列重组组蛋白H1-0的截短突变体,我们证明H1的C末端结构域(CTD)负责激活DFF40/CAD。我们进一步表明,完整的组蛋白H1-0 CTD和某些合成的CTD片段能与DFF40/CAD结合,并赋予其增强的结合DNA的能力。有趣的是,我们发现六种体细胞组蛋白H1亚型中的每一种,其CTD在一级序列上有显著差异但氨基酸组成相同,均能同等程度地激活DFF40/CAD。我们得出结论,此处鉴定的组蛋白H1 CTD与DFF40/CAD之间的相互作用在凋亡终末阶段靶向并激活连接DNA的切割。