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小分子抑制剂与 RNA 聚合酶-Spt5 复合物的结合影响 RNA 和 DNA 的稳定性。

Binding of small molecule inhibitors to RNA polymerase-Spt5 complex impacts RNA and DNA stability.

机构信息

Department of Molecular and Cell Biology, University of California Merced, 5200 North Lake Rd, Merced, CA, 95343, USA.

出版信息

J Comput Aided Mol Des. 2023 Nov 21;38(1):1. doi: 10.1007/s10822-023-00543-z.

Abstract

Spt5 is an elongation factor that associates with RNA polymerase II (Pol II) during transcription and has important functions in promoter-proximal pausing and elongation processivity. Spt5 was also recognized for its roles in the transcription of expanded-repeat genes that are related to neurodegenerative diseases. Recently, a set of Spt5-Pol II small molecule inhibitors (SPIs) were reported, which selectively inhibit mutant huntingtin gene transcription. Inhibition mechanisms as well as interaction sites of these SPIs with Pol II and Spt5 are not entirely known. In this study, we predicted the binding sites of three selected SPIs at the Pol II-Spt5 interface by docking and molecular dynamics simulations. Two molecules out of three demonstrated strong binding with Spt5 and Pol II, while the other molecule was more loosely bound and sampled multiple binding sites. Strongly bound SPIs indirectly affected RNA and DNA dynamics at the exit site as DNA became more flexible while RNA was stabilized by increased interactions with Spt5. Our results suggest that the transcription inhibition mechanism induced by SPIs can be related to Spt5-nucleic acid interactions, which were altered to some extent with strong binding of SPIs.

摘要

Spt5 是一种延伸因子,在转录过程中与 RNA 聚合酶 II(Pol II)结合,在启动子近端暂停和延伸过程中具有重要功能。Spt5 还因其在与神经退行性疾病相关的扩展重复基因转录中的作用而被认可。最近,报道了一组 Spt5-Pol II 小分子抑制剂(SPIs),它们选择性地抑制突变 huntingtin 基因的转录。这些 SPI 与 Pol II 和 Spt5 的抑制机制和相互作用位点尚不完全清楚。在这项研究中,我们通过对接和分子动力学模拟预测了三种选定的 SPI 在 Pol II-Spt5 界面上的结合位点。这三种分子中的两种与 Spt5 和 Pol II 表现出很强的结合能力,而另一种则结合得更松散,并采样了多个结合位点。强烈结合的 SPI 会间接影响出口处的 RNA 和 DNA 动力学,因为 DNA 变得更加灵活,而 RNA 则通过与 Spt5 的相互作用增加而稳定。我们的结果表明,SPI 诱导的转录抑制机制可能与 Spt5-核酸相互作用有关,SPI 的强烈结合在某种程度上改变了这种相互作用。

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