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首页> 外文期刊>Molecular cell >Recognition of RNA polymerase II and transcription bubbles by XPG, CSB, and TFIIH: insights for transcription-coupled repair and Cockayne Syndrome.
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Recognition of RNA polymerase II and transcription bubbles by XPG, CSB, and TFIIH: insights for transcription-coupled repair and Cockayne Syndrome.

机译:XPG,CSB和TFIIH识别RNA聚合酶II和转录气泡:转录偶联修复和Cockayne综合征的见解。

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摘要

Loss of a nonenzymatic function of XPG results in defective transcription-coupled repair (TCR), Cockayne syndrome (CS), and early death, but the molecular basis for these phenotypes is unknown. Mutation of CSB, CSA, or the TFIIH helicases XPB and XPD can also cause defective TCR and CS. We show that XPG interacts with elongating RNA polymerase II (RNAPII) in the cell and binds stalled RNAPII ternary complexes in vitro both independently and cooperatively with CSB. XPG binds transcription-sized DNA bubbles through two domains not required for incision and functionally interacts with CSB on these bubbles to stimulate its ATPase activity. Bound RNAPII blocks bubble incision by XPG, but an ATP hydrolysis-dependent process involving TFIIH creates access to the junction, allowing incision. Together, these results implicate coordinated recognition of stalled transcription by XPG and CSB in TCR initiation and suggest that TFIIH-dependent remodeling of stalled RNAPII without release may be sufficient to allow repair.
机译:XPG的非酶功能丧失会导致缺陷的转录偶联修复(TCR),Cockayne综合征(CS)和早期死亡,但这些表型的分子基础尚不清楚。 CSB,CSA或TFIIH解旋酶XPB和XPD的突变也会导致TCR和CS缺陷。我们显示XPG与细胞中的延长RNA聚合酶II(RNAPII)进行交互,并与CSB独立地和体外地结合失速的RNAPII三元复合物。 XPG通过切口不需要的两个域结合转录大小的DNA气泡,并与这些气泡上的CSB相互作用以刺激其ATPase活性。绑定的RNAPII可以通过XPG阻止气泡切开,但是涉及TFIIH的ATP水解依赖性过程可创建连接点,从而允许切开。总之,这些结果暗示了XPG和CSB在TCR启动中对失速转录的协同识别,并表明不释放而依赖TFIIH的失速RNAPII重塑可能足以修复。

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