Bayona-Feliu Aleix, Casas-Lamesa Anna, Reina Oscar, Bernués Jordi, Azorín Fernando
Institute of Molecular Biology of Barcelona, IBMB, CSIC, Baldiri Reixac, 4, 08028, Barcelona, Spain.
Institute for Research in Biomedicine, IRB Barcelona, The Barcelona Institute of Science and Technology, Baldiri Reixac, 10, 08028, Barcelona, Spain.
Nat Commun. 2017 Aug 18;8(1):283. doi: 10.1038/s41467-017-00338-5.
Linker histone H1 is an important structural component of chromatin that stabilizes the nucleosome and compacts the nucleofilament into higher-order structures. The biology of histone H1 remains, however, poorly understood. Here we show that Drosophila histone H1 (dH1) prevents genome instability as indicated by the increased γH2Av (H2AvS137P) content and the high incidence of DNA breaks and sister-chromatid exchanges observed in dH1-depleted cells. Increased γH2Av occurs preferentially at heterochromatic elements, which are upregulated upon dH1 depletion, and is due to the abnormal accumulation of DNA:RNA hybrids (R-loops). R-loops accumulation is readily detectable in G1-phase, whereas γH2Av increases mainly during DNA replication. These defects induce JNK-mediated apoptosis and are specific of dH1 depletion since they are not observed when heterochromatin silencing is relieved by HP1a depletion. Altogether, our results suggest that histone H1 prevents R-loops-induced DNA damage in heterochromatin and unveil its essential contribution to maintenance of genome stability.While structural importance of linker histone H1 in packaging eukaryotic genome into chromatin is well known, its biological function remains poorly understood. Here the authors reveal that Drosophila linker histone H1 prevents DNA:RNA hybrids accumulation and genome instability in heterochromatin.
连接组蛋白H1是染色质的重要结构成分,它能稳定核小体并将核丝压缩成更高阶结构。然而,组蛋白H1的生物学功能仍知之甚少。我们发现,果蝇组蛋白H1(dH1)可防止基因组不稳定,这一点可通过在dH1缺失细胞中观察到的γH2Av(H2AvS137P)含量增加、DNA断裂和姐妹染色单体交换的高发生率得以体现。γH2Av增加优先发生在异染色质元件上,这些元件在dH1缺失时会上调,这是由于DNA:RNA杂交体(R环)异常积累所致。R环积累在G1期即可轻易检测到,而γH2Av主要在DNA复制期间增加。这些缺陷会诱导JNK介导的细胞凋亡,且是dH1缺失所特有的,因为当通过HP1a缺失解除异染色质沉默时不会观察到这些缺陷。总之,我们的结果表明,组蛋白H1可防止异染色质中R环诱导的DNA损伤,并揭示了其对维持基因组稳定性的重要贡献。虽然连接组蛋白H1在将真核基因组包装成染色质中的结构重要性是众所周知的,但其生物学功能仍知之甚少。本文作者揭示,果蝇连接组蛋白H1可防止异染色质中DNA:RNA杂交体积累和基因组不稳定。