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Identification of an Ubinuclein 1 region required for stability and function of the human HIRA/UBN1/CABIN1/ASF1a histone H3.3 chaperone complex

机译:鉴定人Hira / Ubn1 / Cabin1 / ASF1A组蛋白H3.3伴侣型稳定性和功能所需的ubin核蛋白蛋白蛋白1区域

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摘要

The mammalian HIRA/UBN1/CABIN1/ASF1a (HUCA) histone chaperone complex deposits the histone H3 variant H3.3 into chromatin, and is linked to gene activation, repression and chromatin assembly in diverse cell contexts. We recently reported that a short N-terminal fragment of UBN1 containing amino acids 1–175 is necessary and sufficient for interaction with the WD repeats of HIRA, and attributed this interaction to a region from residues 120–175 that is highly conserved in a yeast ortholog Hpc2 and so termed the HRD for Hpc2-Related Domain. In this report, through a more comprehensive and refined biochemical and mutational analysis, we identify a smaller and more moderately conserved region within residues 41–77 of UBN1, that we term the NHRD, that is essential for interaction with the HIRA WD repeats; we further demonstrate that the HRD is dispensable for this interaction. We employ analytical ultracentrifugation studies to demonstrate that the NHRD of UBN1 and the WD repeats of HIRA form a tight 1:1 complex with a dissociation constant in the nanomolar range. Mutagenesis experiments identify several key residues in the NHRD that are required for interaction with the HIRA WD repeat domain, stability of the HUCA complex in vitro and in vivo and changes in chromatin organization in primary human cells. Together, these studies implicate the NHRD domain of UBN1 as being an essential region for HIRA interaction and chromatin organization by the HUCA complex.
机译:哺乳动物Hira / Ubn1 / Cabin1 / ASF1a(Huca)组蛋白伴侣络合物沉积物沉积组蛋白H3变体H3.3进入染色质,并在不同细胞背景下与基因活化,抑制和染色质组件连接。我们最近报道,含有氨基酸1-175的UBN1的短n末端片段是必要的,并且足以与Hira的Wd重复相互作用,并将这种相互作用归因于来自残留物120-175的区域,该区域在酵母中高度保守Ortholog HPC2和所谓的HPC2相关域的HRD。在本报告中,通过更全面和更精致的生化和突变分析,我们在UBN1的残留物中确定了一个较小更适中的区域,即我们术语NHRD术语,这对于与Hira WD重复的互动至关重要;我们进一步证明了HRD可分配用于这种相互作用。我们采用分析超速离心研究以证明UBN1的NHRD和Hira的WD重复在纳米摩尔范围内具有解离常数,形成紧密的1:1络合物。诱变实验鉴定了与Hira WD重复结构域相互作用所需的NHRD中的几个关键残留物,体外和体内Huca复合物的稳定性以及初级人体细胞中染色质组织的变化。这些研究在一起涉及UBN1的NHRD结构域作为HiRA相互作用和染色质组织的基本区,Huca复合物。

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