首页> 外文OA文献 >The Zn3 Domain of Human Poly(ADP-ribose) Polymerase-1 (PARP-1) Functions in Both DNA-dependent Poly(ADP-ribose) Synthesis Activity and Chromatin Compaction*
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The Zn3 Domain of Human Poly(ADP-ribose) Polymerase-1 (PARP-1) Functions in Both DNA-dependent Poly(ADP-ribose) Synthesis Activity and Chromatin Compaction*

机译:人类聚(ADP-核糖)聚合酶-1(PARP-1)的Zn3结构域在DNA依赖的聚(ADP-核糖)合成活性和染色质压实中均起作用*

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摘要

PARP-1 is involved in multiple cellular processes, including transcription, DNA repair, and apoptosis. PARP-1 attaches ADP-ribose units to target proteins, including itself as a post-translational modification that can change the biochemical properties of target proteins and mediate recruitment of proteins to sites of poly(ADP-ribose) synthesis. Independent of its catalytic activity, PARP-1 binds to chromatin and promotes compaction affecting RNA polymerase II transcription. PARP-1 has a modular structure composed of six independent domains. Two homologous zinc fingers, Zn1 and Zn2, form the DNA-binding module. Zn1-Zn2 binding to DNA breaks triggers catalytic activity. Recently, we have identified a third zinc binding domain in PARP-1, the Zn3 domain, which is essential for DNA-dependent PARP-1 activity. The crystal structure of the Zn3 domain revealed a novel zinc-ribbon fold and a homodimeric Zn3 structure that formed in the crystal lattice. Structure-guided mutagenesis was used here to investigate the roles of these two features of the Zn3 domain. Our results indicate that the zinc-ribbon fold of the Zn3 domain mediates an interdomain contact crucial to assembly of the DNA-activated conformation of PARP-1. In contrast, residues located at the Zn3 dimer interface are not required for DNA-dependent activation but rather make important contributions to the chromatin compaction activity of PARP-1. Thus, the Zn3 domain has dual roles in regulating the functions of PARP-1.
机译:PARP-1参与多个细胞过程,包括转录,DNA修复和凋亡。 PARP-1将ADP-核糖单元连接到目标蛋白质上,包括其自身作为翻译后修饰,可以改变目标蛋白质的生化特性并介导蛋白质募集到聚(ADP-核糖)合成位点。独立于其催化活性,PARP-1与染色质结合并促进紧实,从而影响RNA聚合酶II的转录。 PARP-1具有由六个独立域组成的模块化结构。两个同源的锌指Zn1和Zn2形成DNA结合模块。 Zn1-Zn2结合DNA断裂触发催化活性。最近,我们已经确定了PARP-1中的第三个锌结合结构域Zn3结构域,这对依赖DNA的PARP-1活性至关重要。 Zn3域的晶体结构显示出新颖的锌带折叠和在晶格中形成的同型二聚体Zn3结构。此处使用结构指导的诱变来研究Zn3结构域这两个特征的作用。我们的结果表明Zn3域的锌带折叠介导域间接触对组装PARP-1的DNA激活构象至关重要。相反,位于Zn3二聚体界面的残基不是DNA依赖性激活所必需的,而是对PARP-1的染色质压实活性有重要贡献。因此,Zn3结构域在调节PARP-1的功能中具有双重作用。

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