Meier I, Phelan T, Gruissem W, Spiker S, Schneider D
Institute for General Botany, University of Hamburg, Germany.
Plant Cell. 1996 Nov;8(11):2105-15. doi: 10.1105/tpc.8.11.2105.
The interaction of chromatin with the nuclear matrix via matrix attachment regions (MARs) on the DNA is considered to be of fundamental importance for higher order chromatin organization and regulation of gene expression. Here, we report a novel nuclear matrix-localized MAR DNA binding protein, designated MAR binding filament-like protein 1 (MFP1), from tomato. In contrast to the few animal MAR DNA binding proteins thus far identified, MFP1 contains a predicted N-terminal transmembrane domain and a long filament-like alpha-helical domain that is similar to diverse nuclear and cytoplasmic filament proteins from animals and yeast. DNA binding assays established that MFP1 can discriminate between animal and plant MAR DNAs and non-MAR DNA fragments of similar size and AT content. Deletion mutants of MFP1 revealed a novel, discrete DNA binding domain near the C terminus of the protein. MFP1 is an in vitro substrate for casein kinase II, a nuclear matrix-associated protein kinase. Its structure, MAR DNA binding activity, and nuclear matrix localization suggest that MFP1 is likely to participate in nuclear architecture by connecting chromatin with the nuclear matrix and potentially with the nuclear envelope.
染色质通过DNA上的基质附着区域(MARs)与核基质的相互作用被认为对高阶染色质组织和基因表达调控至关重要。在此,我们报道了一种来自番茄的新型核基质定位的MAR DNA结合蛋白,命名为MAR结合丝状蛋白1(MFP1)。与迄今为止鉴定出的少数动物MAR DNA结合蛋白不同,MFP1含有一个预测的N端跨膜结构域和一个长的丝状α螺旋结构域,该结构域与来自动物和酵母的多种核及细胞质丝状蛋白相似。DNA结合试验表明,MFP1能够区分动物和植物的MAR DNA以及大小和AT含量相似的非MAR DNA片段。MFP1的缺失突变体在该蛋白的C端附近揭示了一个新的、离散的DNA结合结构域。MFP1是酪蛋白激酶II(一种核基质相关蛋白激酶)的体外底物。其结构、MAR DNA结合活性和核基质定位表明,MFP1可能通过将染色质与核基质以及潜在地与核膜连接来参与核结构的形成。