A dynamic structural unit of phase-separated heterochromatin protein 1α as revealed by integrative structural analyses

IF 13.1 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Nucleic Acids Research Pub Date : 2025-03-24 DOI:10.1093/nar/gkaf154
Ayako Furukawa, Kento Yonezawa, Tatsuki Negami, Yuriko Yoshimura, Aki Hayashi, Jun-ichi Nakayama, Naruhiko Adachi, Toshiya Senda, Kentaro Shimizu, Tohru Terada, Nobutaka Shimizu, Yoshifumi Nishimura
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Abstract

The heterochromatin protein HP1α consists of an N-terminal disordered tail (N-tail), chromodomain (CD), hinge region (HR), and C-terminal chromo shadow domain (CSD). While CD binds to the lysine9-trimethylated histone H3 (H3K9me3) tail in nucleosomes, CSD forms a dimer bridging two nucleosomes with H3K9me3. Phosphorylation of serine residues in the N-tail enhances both H3K9me3 binding and liquid–liquid phase separation (LLPS) by HP1α. We have used integrative structural methods, including nuclear magnetic resonance, small-angle X-ray scattering (SAXS), and multi-angle-light scattering combined with size-exclusion chromatography, and coarse-grained molecular dynamics simulation with SAXS, to probe the HP1α dimer and its CSD deletion monomer. We show that dynamic intra- and intermolecular interactions between the N-tails and basic segments in CD and HR depend on N-tail phosphorylation. While the phosphorylated HP1α dimer undergoes LLPS via the formation of aggregated multimers, the N-tail phosphorylated mutant without CSD still undergoes LLPS, but its structural unit is a dynamic intermolecular dimer formed via the phosphorylated N-tail and a basic segment at the CD end. Furthermore, we reveal that mutation of this basic segment in HP1α affects the size of heterochromatin foci in cultured mammalian cells, suggesting that this interaction plays an important role in heterochromatin formation in vivo.
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通过综合结构分析揭示了相分离异染色质蛋白1α的动态结构单元
异染色质蛋白HP1α由n端无序尾(N-tail)、色域(CD)、铰链区(HR)和c端色影域(CSD)组成。在核小体中,CD与赖氨酸-三甲基化组蛋白H3 (H3K9me3)尾部结合,而CSD则与H3K9me3形成二聚体连接两个核小体。n尾丝氨酸残基的磷酸化增强了H3K9me3结合和HP1α的液-液相分离(LLPS)。我们采用核磁共振、小角度x射线散射(SAXS)、多角度光散射结合尺寸排除色谱、SAXS粗粒度分子动力学模拟等综合结构方法,对HP1α二聚体及其CSD缺失单体进行了探测。我们发现CD和HR中n -尾和基本片段之间的动态分子内和分子间相互作用依赖于n -尾磷酸化。磷酸化的HP1α二聚体通过形成聚集的多聚体进行LLPS,而没有CSD的n -尾磷酸化突变体仍然经历LLPS,但其结构单元是通过磷酸化的n -尾和CD端基本片段形成的动态分子间二聚体。此外,我们发现,在培养的哺乳动物细胞中,HP1α中这一基本片段的突变会影响异染色质病灶的大小,这表明这种相互作用在体内异染色质形成中起重要作用。
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来源期刊
Nucleic Acids Research
Nucleic Acids Research 生物-生化与分子生物学
CiteScore
27.10
自引率
4.70%
发文量
1057
审稿时长
2 months
期刊介绍: Nucleic Acids Research (NAR) is a scientific journal that publishes research on various aspects of nucleic acids and proteins involved in nucleic acid metabolism and interactions. It covers areas such as chemistry and synthetic biology, computational biology, gene regulation, chromatin and epigenetics, genome integrity, repair and replication, genomics, molecular biology, nucleic acid enzymes, RNA, and structural biology. The journal also includes a Survey and Summary section for brief reviews. Additionally, each year, the first issue is dedicated to biological databases, and an issue in July focuses on web-based software resources for the biological community. Nucleic Acids Research is indexed by several services including Abstracts on Hygiene and Communicable Diseases, Animal Breeding Abstracts, Agricultural Engineering Abstracts, Agbiotech News and Information, BIOSIS Previews, CAB Abstracts, and EMBASE.
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