Weng Liwei, Greenberg Marc M
Department of Chemistry, Johns Hopkins University , 3400 North Charles Street, Baltimore, Maryland 21218, United States.
J Am Chem Soc. 2015 Sep 2;137(34):11022-31. doi: 10.1021/jacs.5b05478. Epub 2015 Aug 20.
C5'-Hydrogen atoms are frequently abstracted during DNA oxidation. The oxidized abasic lesion 5'-(2-phosphoryl-1,4-dioxobutane) (DOB) is an electrophilic product of the C5'-radical. DOB is a potent irreversible inhibitor of DNA polymerase β, and forms interstrand cross-links in free DNA. We examined the reactivity of DOB within nucleosomes and nucleosome core particles (NCPs), the monomeric component of chromatin. Depending upon the position at which DOB is generated within a NCP, it is excised from nucleosomal DNA at a rate 275-1500-fold faster than that in free DNA. The half-life of DOB (7.0-16.8 min) in NCPs is shorter than any other abasic lesion. DOB's lifetime in NCPs is also significantly shorter than the estimated lifetime of an abasic site within a cell, suggesting that the observed chemistry would occur intracellularly. Histones also catalyze DOB excision when the lesion is present in the DNA linker region of a nucleosome. Schiff-base formation between DOB and histone proteins is detected in nucleosomes and NCPs, resulting in pyrrolone formation at the lysine residues. The lysines modified by DOB are often post-translationally modified. Consequently, the histone modifications described herein could affect the regulation of gene expression and may provide a chemical basis for the cytotoxicity of the DNA damaging agents that produce this lesion.
在DNA氧化过程中,C5'-氢原子经常被夺取。氧化脱碱基损伤5'-(2-磷酸基-1,4-二氧代丁烷)(DOB)是C5'-自由基的亲电产物。DOB是DNA聚合酶β的一种强效不可逆抑制剂,可在游离DNA中形成链间交联。我们研究了DOB在核小体和核小体核心颗粒(NCPs,染色质的单体成分)中的反应活性。根据DOB在NCP内产生的位置,它从核小体DNA中切除的速率比在游离DNA中快275 - 1500倍。DOB在NCP中的半衰期(7.0 - 16.8分钟)比任何其他脱碱基损伤都短。DOB在NCP中的寿命也明显短于细胞内脱碱基位点的估计寿命,这表明所观察到的化学反应会在细胞内发生。当损伤存在于核小体的DNA连接区时,组蛋白也会催化DOB的切除。在核小体和NCP中检测到DOB与组蛋白之间形成席夫碱,导致赖氨酸残基处形成吡咯酮。被DOB修饰的赖氨酸通常会进行翻译后修饰。因此,本文所述的组蛋白修饰可能会影响基因表达的调控,并可能为产生这种损伤的DNA损伤剂的细胞毒性提供化学基础。