National Centre for Biomolecular Research, Faculty of Science, Masaryk University, Kotlářská 2, Brno, CZ-61137, Czech Republic.
Molecular Cytology and Cytometry, Institute of Biophysics of the Czech Academy of Sciences, v.v.i., Královopolská 135, Brno, CZ-61265, Czech Republic.
Plant J. 2021 Apr;106(1):56-73. doi: 10.1111/tpj.15145. Epub 2021 Feb 22.
Histone chaperones mediate the assembly and disassembly of nucleosomes and participate in essentially all DNA-dependent cellular processes. In Arabidopsis thaliana, loss-of-function of FAS1 or FAS2 subunits of the H3-H4 histone chaperone complex CHROMATIN ASSEMBLY FACTOR 1 (CAF-1) has a dramatic effect on plant morphology, growth and overall fitness. CAF-1 dysfunction can lead to altered chromatin compaction, systematic loss of repetitive elements or increased DNA damage, clearly demonstrating its severity. How chromatin composition is maintained without functional CAF-1 remains elusive. Here we show that disruption of the H2A-H2B histone chaperone NUCLEOSOME ASSEMBLY PROTEIN 1 (NAP1) suppresses the FAS1 loss-of-function phenotype. The quadruple mutant fas1 nap1;1 nap1;2 nap1;3 shows wild-type growth, decreased sensitivity to genotoxic stress and suppression of telomere and 45S rDNA loss. Chromatin of fas1 nap1;1 nap1;2 nap1;3 plants is less accessible to micrococcal nuclease and the nuclear H3.1 and H3.3 histone pools change compared to fas1. Consistently, association between NAP1 and H3 occurs in the cytoplasm and nucleus in vivo in protoplasts. Altogether we show that NAP1 proteins play an essential role in DNA repair in fas1, which is coupled to nucleosome assembly through modulation of H3 levels in the nucleus.
组蛋白伴侣介导核小体的组装和拆卸,并参与几乎所有依赖于 DNA 的细胞过程。在拟南芥中,H3-H4 组蛋白伴侣复合物 CHROMATIN ASSEMBLY FACTOR 1 (CAF-1) 的 FAS1 或 FAS2 亚基丧失功能对植物形态、生长和整体适应性有显著影响。CAF-1 功能障碍可导致染色质紧缩改变、重复元件系统丢失或 DNA 损伤增加,这清楚地表明其严重性。没有功能性 CAF-1,染色质组成如何维持仍然难以捉摸。在这里,我们表明破坏 H2A-H2B 组蛋白伴侣 NUCLEOSOME ASSEMBLY PROTEIN 1 (NAP1) 可以抑制 FAS1 丧失功能表型。四重突变体 fas1 nap1;1 nap1;2 nap1;3 表现出野生型生长、对遗传毒性应激的敏感性降低以及端粒和 45S rDNA 丢失的抑制。fas1 nap1;1 nap1;2 nap1;3 植物的染色质对微球菌核酸酶的可及性降低,与 fas1 相比,核 H3.1 和 H3.3 组蛋白库发生变化。一致地,NAP1 和 H3 之间的关联在原生质体的细胞质和核内在体内发生。总之,我们表明 NAP1 蛋白在 fas1 的 DNA 修复中发挥重要作用,这通过调节核内 H3 水平与核小体组装偶联。