Structural and Computational Biology Unit, European Molecular Biology Laboratory (EMBL), Meyerhofstraße 1, 69117 Heidelberg, Germany.
Université de Paris, CNRS, Institut Jacques Monod, 75006 Paris, France.
Cell Rep. 2022 Sep 6;40(10):111316. doi: 10.1016/j.celrep.2022.111316.
RNA polymerase (Pol) III is specialized to transcribe short, abundant RNAs, for which it terminates transcription on polythymine (dT) stretches on the non-template (NT) strand. When Pol III reaches the termination signal, it pauses and forms the pre-termination complex (PTC). Here, we report cryoelectron microscopy (cryo-EM) structures of the yeast Pol III PTC and complementary functional states at resolutions of 2.7-3.9 Å. Pol III recognizes the poly(dT) termination signal with subunit C128 that forms a hydrogen-bond network with the NT strand and, thereby, induces pausing. Mutating key interacting residues interferes with transcription termination in vitro, impairs yeast growth, and causes global termination defects in vivo, confirming our structural results. Additional cryo-EM analysis reveals that C53-C37, a Pol III subcomplex and key termination factor, participates indirectly in Pol III termination. We propose a mechanistic model of Pol III transcription termination and rationalize why Pol III, unlike Pol I and Pol II, terminates on poly(dT) signals.
RNA 聚合酶(Pol)III 专门转录短而丰富的 RNA,它在非模板(NT)链上的多胸腺嘧啶(dT)延伸处终止转录。当 Pol III 到达终止信号时,它会暂停并形成预终止复合物(PTC)。在这里,我们报告了分辨率为 2.7-3.9 Å 的酵母 Pol III PTC 和互补功能状态的冷冻电镜(cryo-EM)结构。Pol III 通过亚基 C128 识别多聚(dT)终止信号,C128 与 NT 链形成氢键网络,从而诱导暂停。突变关键相互作用残基会干扰体外转录终止,损害酵母生长,并导致体内全局终止缺陷,证实了我们的结构结果。进一步的 cryo-EM 分析表明,Pol III 亚复合物和关键终止因子 C53-C37 间接参与 Pol III 终止。我们提出了 Pol III 转录终止的机制模型,并合理地解释了为什么 Pol III 不像 Pol I 和 Pol II 那样在多聚(dT)信号上终止。