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H4K20me0 marks post-replicative chromatin and recruits the TONSL-MMS22L DNA repair complex

机译:H4K20me0标记复制后的染色质并募集TONSL-MMS22L DNA修复复合体

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摘要

After DNA replication, chromosomal processes including DNA repair and transcription take place in the context of sister chromatids. While cell cycle regulation can guide these processes globally, mechanisms to distinguish pre- and post-replicative states locally remain unknown. Here we reveal that new histones incorporated during DNA replication provide a signature of post-replicative chromatin, read by the human TONSL-MMS22L(1-4) homologous recombination complex. We identify the TONSL ankyrin repeat domain (ARD) as a reader of histone H4 tails unmethylated at K20 (H4K20me0), which are specific to new histones incorporated during DNA replication and mark post-replicative chromatin until the G2/M phase of the cell cycle. Accordingly, TONSL-MMS22L binds new histones H3-H4 both before and after incorporation into nucleosomes, remaining on replicated chromatin until late G2/M. H4K20me0 recognition is required for TONSL-MMS22L binding to chromatin and accumulation at challenged replication forks and DNA lesions. Consequently, TONSL ARD mutants are toxic, compromising genome stability, cell viability and resistance to replication stress. Together, these data reveal a histone-reader-based mechanism for recognizing the post-replicative state, offering a new angle to understand DNA repair with the potential for targeted cancer therapy.
机译:DNA复制后,在姐妹染色单体的背景下发生包括DNA修复和转录在内的染色体过程。尽管细胞周期调节可以全局指导这些过程,但是局部区分复制前和复制后状态的机制仍然未知。在这里,我们揭示了在DNA复制过程中并入的新组蛋白提供了复制后染色质的特征,由人TONSL-MMS22L(1-4)同源重组复合体读取。我们将TONSL锚蛋白重复域(ARD)识别为在K20(H4K20me0)未甲基化的组蛋白H4尾巴的阅读器,后者对DNA复制期间掺入的新组蛋白具有特异性,并标记复制后的染色质直到细胞周期的G2 / M期。因此,TONSL-MMS22L在掺入核小体之前和之后都结合新的组蛋白H3-H4,保留在复制的染色质上直至G2 / M晚期。 TONSL-MMS22L与染色质的结合以及在受挑战的复制叉和DNA损伤处的积累需要H4K20me0识别。因此,TONSL ARD突变体具有毒性,损害了基因组稳定性,细胞活力和对复制压力的抵抗力。这些数据共同揭示了一种基于组蛋白阅读器的机制,可识别复制后的状态,为了解DNA修复技术和靶向癌症治疗的潜力提供了新的视角。

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  • 来源
    《Nature》 |2016年第7609期|714-718|共5页
  • 作者单位

    Univ Copenhagen, BRIC, Fac Hlth & Med Sci, DK-2200 Copenhagen, Denmark|Univ Copenhagen, Ctr Epigenet, Fac Hlth & Med Sci, DK-2200 Copenhagen, Denmark;

    Mem Sloan Kettering Canc Ctr, Struct Biol Program, New York, NY 10065 USA;

    Univ Copenhagen, BRIC, Fac Hlth & Med Sci, DK-2200 Copenhagen, Denmark|Univ Copenhagen, Ctr Epigenet, Fac Hlth & Med Sci, DK-2200 Copenhagen, Denmark;

    Univ Copenhagen, BRIC, Fac Hlth & Med Sci, DK-2200 Copenhagen, Denmark|Univ Copenhagen, Ctr Epigenet, Fac Hlth & Med Sci, DK-2200 Copenhagen, Denmark;

    Univ Copenhagen, Novo Nordisk Fdn, Ctr Prot Res, DK-2200 Copenhagen, Denmark;

    Univ Munich, Dept Mol Biol, Biomed Ctr, D-80336 Munich, Germany|Univ Munich, Ctr Integrated Prot Sci Munich, D-80336 Munich, Germany;

    Univ Copenhagen, BRIC, Fac Hlth & Med Sci, DK-2200 Copenhagen, Denmark|Univ Copenhagen, Ctr Epigenet, Fac Hlth & Med Sci, DK-2200 Copenhagen, Denmark;

    Univ London Imperial Coll Sci Technol & Med, Fac Med, MRC, CSC, Du Cane Rd, London W12 0NN, England|Univ London Imperial Coll Sci Technol & Med, Fac Med, ICS, Du Cane Rd, London W12 0NN, England;

    Univ Zurich, Inst Mol Canc Res, CH-8057 Zurich, Switzerland;

    Univ London Imperial Coll Sci Technol & Med, Fac Med, MRC, CSC, Du Cane Rd, London W12 0NN, England|Univ London Imperial Coll Sci Technol & Med, Fac Med, ICS, Du Cane Rd, London W12 0NN, England;

    Univ Zurich, Inst Mol Canc Res, CH-8057 Zurich, Switzerland;

    Univ Copenhagen, Novo Nordisk Fdn, Ctr Prot Res, DK-2200 Copenhagen, Denmark;

    Univ Munich, Dept Mol Biol, Biomed Ctr, D-80336 Munich, Germany|Univ Munich, Ctr Integrated Prot Sci Munich, D-80336 Munich, Germany;

    Mem Sloan Kettering Canc Ctr, Struct Biol Program, New York, NY 10065 USA;

    Univ Copenhagen, BRIC, Fac Hlth & Med Sci, DK-2200 Copenhagen, Denmark|Univ Copenhagen, Ctr Epigenet, Fac Hlth & Med Sci, DK-2200 Copenhagen, Denmark;

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