Biochemistry Laboratory, Jacobs University Bremen, Campus Ring 1, 28759 Bremen, Germany.
Hum Mol Genet. 2011 Jun 1;20(11):2195-203. doi: 10.1093/hmg/ddr107. Epub 2011 Mar 18.
Mutations in the ATRX protein are associated with the alpha-thalassemia and mental retardation X-linked syndrome (ATR-X). Almost half of the disease-causing mutations occur in its ATRX-Dnmt3-Dnmt3L (ADD) domain. By employing peptide arrays, chromatin pull-down and peptide binding assays, we show specific binding of the ADD domain to H3 histone tail peptides containing H3K9me3. Peptide binding was disrupted by the presence of the H3K4me3 and H3K4me2 modification marks indicating that the ATRX-ADD domain has a combined readout of these two important marks (absence of H3K4me2 and H3K4me3 and presence of H3K9me3). Disease-causing mutations reduced ATRX-ADD binding to H3 tail peptides. ATRX variants, which fail in the H3K9me3 interaction, show a loss of heterochromatic localization in cells, which indicates the chromatin targeting function of the ADD domain of ATRX. Disruption of H3K9me3 binding may be a general pathogenicity pathway of ATRX mutations in the ADD domain which may explain the clustering of disease mutations in this part of the ATRX protein.
ATRX 蛋白中的突变与 X 连锁的α-地中海贫血伴智力低下综合征(ATR-X)有关。近一半的致病突变发生在其 ATRX-Dnmt3-Dnmt3L(ADD)结构域。通过使用肽阵列、染色质下拉和肽结合测定,我们显示 ADD 结构域与含有 H3K9me3 的 H3 组蛋白尾部肽特异性结合。肽结合被 H3K4me3 和 H3K4me2 修饰标记的存在所破坏,这表明 ATRX-ADD 结构域对这两个重要标记(H3K4me2 和 H3K4me3 的缺失和 H3K9me3 的存在)具有综合的读出能力。致病突变降低了 ATRX-ADD 对 H3 尾部肽的结合。在 H3K9me3 相互作用中失效的 ATRX 变体在细胞中失去异染色质定位,这表明 ATRX 的 ADD 结构域具有染色质靶向功能。破坏 H3K9me3 结合可能是 ATRX 突变在 ADD 结构域中的一种普遍致病性途径,这可以解释该 ATRX 蛋白这一部分的疾病突变聚集。