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Interplay between mismatch repair and chromatin assembly

机译:错配修复和染色质组装之间的相互作用

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摘要

Single strand nicks and gaps in DNA have been reported to increase the efficiency of nucleosome loading mediated by chroma-tin assembly factor 1 (CAF-1). However, on mismatch-containing substrates, these strand discontinuities are utilized by the mismatch repair (MMR) system as loading sites for exonuclease 1, at which degradation of the error-containing strand commences. Because packaging of DNA into chromatin might inhibit MMR, we were interested to learn whether chromatin assembly is differentially regulated on heteroduplex and homoduplex substrates. We now show that the presence of a mismatch in a nicked plasmid substrate delays nucleosome loading in human cell extracts. Our data also suggest that, once the mismatch is removed, repair of the single-stranded gap is accompanied by efficient nucleosome loading. We postulated that the balance between MMR and chromatin assembly might be governed by proliferating cell nuclear antigen (PCNA), the processivity factor of replicative DNA polymerases, which is loaded at DNA termini and which interacts with the MSH6 subunit of the mismatch recognition factor MutSa, as well as with CAF-1. We now show that this regulation might be more complex; MutSu and CAF-1 interact not only with PCNA, but also with each other. In vivo this interaction increases during S-phase and may be controlled by the phosphorylation status of the p150 subunit of CAF-1.
机译:据报道,DNA中的单链缺口和缺口可提高由色氨酸装配因子1(CAF-1)介导的核小体装载效率。但是,在含错配的底物上,错配修复(MMR)系统将这些链的不连续性用作核酸外切酶1的加载位点,在此,含错链的降解开始。因为将DNA包装到染色质中可能会抑制MMR,所以我们有兴趣了解染色质装配在异源双链和同源双链底物上是否受到差异调节。我们现在显示,在有切口的质粒底物中存在错配会延迟人类细胞提取物中核小体的装载。我们的数据还表明,一旦消除了错配,单链缺口的修复就伴随着有效的核小体负载。我们推测,MMR和染色质组装之间的平衡可能受增殖细胞核抗原(PCNA)的支配,后者是复制性DNA聚合酶的持续性因子,其负载在DNA末端,并与错配识别因子MutSa的MSH6亚基相互作用,以及CAF-1。现在,我们表明该法规可能更复杂; MutSu和CAF-1不仅与PCNA相互作用,而且还彼此相互作用。在体内,这种相互作用在S期期间增加,并且可能受CAF-1 p150亚基的磷酸化状态控制。

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    Institute of Molecular Cancer Research, University of Zurich, Winterthurerstasse 190, CH-8057 Zurich, Switzerland,Department of Biology, Swiss Institute of Science and Technology (Eidgenossische Technische Hochschule), Winterthurerstasse. 190, CH-8057 Zurich, Switzerland;

    Institute of Molecular Cancer Research, University of Zurich, Winterthurerstasse 190, CH-8057 Zurich, Switzerland,Department of Biology, Swiss Institute of Science and Technology (Eidgenossische Technische Hochschule), Winterthurerstasse. 190, CH-8057 Zurich, Switzerland;

    Centre de Recherche, Institut Curie, 26 rue d'Ulm, F-75248 Paris, France;

    Department of Biochemistry and Molecular Biology, Southern Illinois University School of Medicine, Carbondale, IL 62901;

    Centre de Recherche, Institut Curie, 26 rue d'Ulm, F-75248 Paris, France;

    Institute of Molecular Cancer Research, University of Zurich, Winterthurerstasse 190, CH-8057 Zurich, Switzerland,Department of Biology, Swiss Institute of Science and Technology (Eidgenossische Technische Hochschule), Winterthurerstasse. 190, CH-8057 Zurich, Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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