Gregor Mendel Institute, Austrian Academy of Sciences, Vienna BioCenter, Vienna, Austria.
Biomedical Center, Department of Physiological Chemistry, Ludwig-Maximilians-University of Munich, Planegg-Martinsried, Germany.
PLoS Genet. 2021 Jun 4;17(6):e1009601. doi: 10.1371/journal.pgen.1009601. eCollection 2021 Jun.
Selection of C-terminal motifs participated in evolution of distinct histone H2A variants. Hybrid types of variants combining motifs from distinct H2A classes are extremely rare. This suggests that the proximity between the motif cases interferes with their function. We studied this question in flowering plants that evolved sporadically a hybrid H2A variant combining the SQ motif of H2A.X that participates in the DNA damage response with the KSPK motif of H2A.W that stabilizes heterochromatin. Our inventory of PTMs of H2A.W variants showed that in vivo the cell cycle-dependent kinase CDKA phosphorylates the KSPK motif of H2A.W but only in absence of an SQ motif. Phosphomimicry of KSPK prevented DNA damage response by the SQ motif of the hybrid H2A.W/X variant. In a synthetic yeast expressing the hybrid H2A.W/X variant, phosphorylation of KSPK prevented binding of the BRCT-domain protein Mdb1 to phosphorylated SQ and impaired response to DNA damage. Our findings illustrate that PTMs mediate interference between the function of H2A variant specific C-terminal motifs. Such interference could explain the mutual exclusion of motifs that led to evolution of H2A variants.
参与独特组蛋白 H2A 变体进化的 C 末端基序的选择。结合不同 H2A 类别的基序的混合变体类型极为罕见。这表明基序之间的接近程度干扰了它们的功能。我们在开花植物中研究了这个问题,这些植物偶尔会进化出一种混合的 H2A 变体,该变体将参与 DNA 损伤反应的 H2A.X 的 SQ 基序与稳定异染色质的 H2A.W 的 KSPK 基序结合在一起。我们对 H2A.W 变体的 PTMs 的研究表明,在体内细胞周期依赖性激酶 CDKA 磷酸化 H2A.W 的 KSPK 基序,但仅在不存在 SQ 基序的情况下。KSPK 的磷酸模拟物通过杂交 H2A.W/X 变体的 SQ 基序阻止了 DNA 损伤反应。在表达杂交 H2A.W/X 变体的合成酵母中,KSPK 的磷酸化阻止了 BRCT 结构域蛋白 Mdb1 与磷酸化的 SQ 的结合,并损害了对 DNA 损伤的反应。我们的研究结果表明,PTMs 介导了特定于 H2A 变体的 C 末端基序的功能之间的干扰。这种干扰可以解释导致 H2A 变体进化的基序相互排斥的原因。