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首页> 外文期刊>Chromosoma >Mutations in the heterochromatin protein 1 (HP1) hinge domain affect HP1 protein interactions and chromosomal distribution
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Mutations in the heterochromatin protein 1 (HP1) hinge domain affect HP1 protein interactions and chromosomal distribution

机译:异染色质蛋白1(HP1)铰链域中的突变影响HP1蛋白相互作用和染色体分布

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摘要

Heterochromatin Protein 1 (HP1) is a conserved component of the highly compact chromatin found at centromeres and telomeres. A conserved feature of the protein is multiple phosphorylation. Hyper-phosphorylation of HP1 accompanies the assembly of cytologically distinct heterochromatin during early embryogenesis. Hypo-phosphorylated HP1 is associated with the DNA-binding activities of the origin recognition complex (ORC) and an HMG-like HP1/ORC-Associated Protein (HOAP). Perturbations in HP1 localization in pericentric and telomeric heterochromatin in mutants for Drosophila ORC2 and HOAP, respectively, indicate roles for these HP1 phosphoisoforms in heterochromatin assembly also. To elucidate the roles of hypo- and hyper-phosphophorylated HP1 in heterochromatin assembly, we have mutated consensus Protein Kinase-A phosphorylation sites in the HP1 hinge domain and examined the mutant proteins for distinct in vitro and in vivo activities. Mutations designed to mimic hyper-phosphorylation render the protein incapable of binding HOAP and the DmORC1 subunit but confer enhanced homo-dimerization and lysine 9-methylated histone H3-binding to the protein. Mutations rendering the protein unphosphorylatable, by contrast, do not affect homo-dimerization or binding to lysine 9-di-methylated histone H3, HOAP, or DmORC1 but do confer novel DmORC2-binding activity to the protein. This mutant protein is ectopically localized throughout the chromosomes when overexpressed in vivo in the presence of a full dose of DmORC2. This ectopic targeting is accompanied by ectopic targeting of lysine 9 tri-methylated histone H3. The distinct activities of these mutant proteins could reflect distinct roles for HP1 phosphoisoforms in heterochromatin structure and function.
机译:异染色质蛋白1(HP1)是着丝粒和端粒中高度致密的染色质的保守成分。蛋白质的保守特征是多重磷酸化。 HP1的超磷酸化伴随着早期胚胎发生过程中细胞学上不同的异染色质的组装。次磷酸化的HP1与起源识别复合物(ORC)和类似HMG的HP1 / ORC相关蛋白(HOAP)的DNA结合活性相关。果蝇ORC2和HOAP突变体中HP1定位在外周和端粒异染色质中的扰动分别表明这些HP1磷酸同工型在异染色质装配中的作用。为了阐明低磷酸化和超磷酸化的HP1在异染色质装配中的作用,我们在HP1铰链域中突变了共有蛋白激酶-A磷酸化位点,并检查了突变蛋白在体外和体内的独特活性。设计为模仿过度磷酸化的突变使该蛋白无法结合HOAP和DmORC1亚基,但赋予了增强的均二聚作用和赖氨酸9-甲基化的组蛋白H3与该蛋白的结合。相比之下,使蛋白质不可磷酸化的突变不会影响均二聚化或与赖氨酸9-二甲基化组蛋白H3,HOAP或DmORC1结合,但会赋予该蛋白质新的DmORC2结合活性。当在全剂量DmORC2存在下体内过表达时,该突变蛋白在整个染色体上异位定位。这种异位靶向伴随着赖氨酸9三甲基化组蛋白H3的异位靶向。这些突变蛋白的独特活性可能反映了HP1磷酸同工型在异染色质结构和功能中的独特作用。

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  • 来源
    《Chromosoma》 |2005年第7期|370-384|共15页
  • 作者单位

    Department of Biology University of Kentucky 101 T.H. Morgan Building Lexington KY 40506-0225 USA;

    Department of Biology University of Kentucky 101 T.H. Morgan Building Lexington KY 40506-0225 USA;

    Department of Biology University of Kentucky 101 T.H. Morgan Building Lexington KY 40506-0225 USA;

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