Division of Pharmaceutical Sciences, Skaggs School of Pharmacy and Pharmaceutical Sciences, University of California, San Diego, La Jolla, CA 92093, USA.
Department of Cellular and Molecular Medicine, University of California, San Diego, La Jolla, CA 92093, USA.
Nucleic Acids Res. 2021 May 21;49(9):4944-4953. doi: 10.1093/nar/gkab240.
Transcription elongation can be affected by numerous types of obstacles, such as nucleosome, pausing sequences, DNA lesions and non-B-form DNA structures. Spt4/5 and Elf1 are conserved transcription elongation factors that promote RNA polymerase II (Pol II) bypass of nucleosome and pausing sequences. Importantly, genetic studies have shown that Spt4/5 plays essential roles in the transcription of expanded nucleotide repeat genes associated with inherited neurological diseases. Here, we investigate the function of Spt4/5 and Elf1 in the transcription elongation of CTG•CAG repeat using an in vitro reconstituted yeast transcription system. We found that Spt4/5 helps Pol II transcribe through the CTG•CAG tract duplex DNA, which is in good agreement with its canonical roles in stimulating transcription elongation. In sharp contrast, surprisingly, we revealed that Spt4/5 greatly inhibits Pol II transcriptional bypass of CTG and CAG slip-out structures. Furthermore, we demonstrated that transcription elongation factor Elf1 individually and cooperatively with Spt4/5 inhibits Pol II bypass of the slip-out structures. This study uncovers the important functional interplays between template DNA structures and the function of transcription elongation factors. This study also expands our understanding of the functions of Spt4/5 and Elf1 in transcriptional processing of trinucleotide repeat DNA.
转录延伸可以受到多种类型的障碍的影响,如核小体、暂停序列、DNA 损伤和非 B 型 DNA 结构。Spt4/5 和 Elf1 是保守的转录延伸因子,它们促进 RNA 聚合酶 II(Pol II)绕过核小体和暂停序列。重要的是,遗传研究表明,Spt4/5 在与遗传性神经疾病相关的扩展核苷酸重复基因的转录中发挥着重要作用。在这里,我们使用体外重组酵母转录系统研究了 Spt4/5 和 Elf1 在 CTG•CAG 重复转录延伸中的功能。我们发现 Spt4/5 有助于 Pol II 转录穿过 CTG•CAG 串联 DNA,这与其在刺激转录延伸中的典型作用一致。相比之下,令人惊讶的是,我们揭示了 Spt4/5 极大地抑制了 Pol II 对 CTG 和 CAG 滑出结构的转录旁路。此外,我们证明转录延伸因子 Elf1 单独且与 Spt4/5 合作抑制 Pol II 对滑出结构的旁路。这项研究揭示了模板 DNA 结构与转录延伸因子功能之间的重要功能相互作用。这项研究还扩展了我们对 Spt4/5 和 Elf1 在三核苷酸重复 DNA 转录加工中的功能的理解。