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Mechanistic Studies on Histone Catalyzed Cleavage of Apyrimidinic/Apurinic Sites in Nucleosome Core Particles

机译:组蛋白催化核小体核心颗粒中嘧啶/嘌呤位点裂解的机理研究

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摘要

Duplex DNA containing an apurinic/apyrimi- dinic (AP) lesion undergoes cleavage significantly more rapidly in nucleosome core particles (NCPs) than it does when free. The mechanism of AP cleavage within NCPs was studied through independently generating lesions within them. AP mediated DNA cleavage within NCPs is initiated by DNA- protein cross-link (DPC_(un)) formation followed by β- elimination to give DPCs containing cleaved DNA (DPC_(cl)). Hydrolysis of DPC_(cl) produces a DNA single strand break (SSB). C2-dideuteration of AP showed that deprotonation from this position is involved in the rate-determining step. Experiments utilizing NCPs containing mutated histone H4 proteins indicated that lysine residues in the amino terminal tail are involved in both DPC formation and β-elimination steps. Lysines 16 and 20 seem to play a greater role in reacting with AP at superhelical location 1.5, but other amino acids (e.g., lysines 5, 8, and 12) compensate in their absence. The mechanism of rapid double strand breaks in bistranded, clustered AP lesions was studied by independently preparing reaction intermediates within model NCPs. A single strand break on one strand enhances the cleavage of a proximal AP on the opposite strand.
机译:与游离时相比,含有嘌呤/表皮(AP)病变的双链DNA在核小体核心颗粒(NCP)中的裂解速度要快得多。 NCPs中AP裂解的机制是通过在它们内部独立产生损伤来研究的。 NCP中AP介导的DNA切割是通过形成DNA-蛋白质交联键(DPC_(un)),然后进行β-消除,得到包含切割的DNA(DPC_(cl))的DPC引发的。 DPC_(cl)的水解产生DNA单链断裂(SSB)。 AP的C2氘化表明速率确定步骤涉及该位置的去质子化。利用含有突变的组蛋白H4蛋白的NCP进行的实验表明,氨基末端的赖氨酸残基参与DPC的形成和β-消除步骤。赖氨酸16和20在与超螺旋位置1.5的AP反应中似乎起着更大的作用,但是其他氨基酸(例如赖氨酸5、8和12)在它们不存在时会补偿。通过独立地在模型NCP中制备反应中间体,研究了双链簇状AP病变中快速双链断裂的机制。一条链上的单链断裂增强了相反链上近端AP的切割。

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  • 来源
    《Journal of the American Chemical Society》 |2012年第40期|p.16734-16741|共8页
  • 作者单位

    Department of Chemistry, Johns Hopkins University, 3400 North Charles Street, Baltimore, Maryland 21218, United States;

    Department of Chemistry, Johns Hopkins University, 3400 North Charles Street, Baltimore, Maryland 21218, United States;

    Department of Chemistry, Johns Hopkins University, 3400 North Charles Street, Baltimore, Maryland 21218, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:13:41

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