Transcription of transfer RNA (tRNA) genes by RNA polymerase (Pol) III requires the general transcription factor IIIC (TFIIIC), which recognizes intragenic A-box and B-box DNA motifs of type II gene promoters. However, the underlying mechanism has remained elusive, in part due to missing structural information for A-box recognition. In this study, we use single-particle cryogenic electron microscopy (cryo-EM) and single-molecule fluorescence resonance energy transfer (smFRET) to reveal structural and real-time kinetic insights into how the 520-kDa yeast TFIIIC complex engages A-box and B-box DNA motifs in the context of a tRNA gene promoter. Cryo-EM structures of ÏA and ÏB subcomplexes bound to the A-box and B-box were obtained at 3.7 and 2.5 à resolution, respectively, while cryo-EM single-particle mapping determined the specific distance and relative orientation of the ÏA and ÏB subcomplexes revealing a fully engaged state of TFIIIC. smFRET experiments show that overall recruitment and residence times of TFIIIC on a tRNA gene are primarily governed by B-box recognition, while footprinting experiments suggest a key role of ÏA and the A-box in TFIIIB and Pol III recruitment following TFIIIC recognition of type II promoters.
Structural and kinetic insights into tRNA promoter engagement by yeast general transcription factor TFIIIC.
酵母通用转录因子 TFIIIC 与 tRNA 启动子结合的结构和动力学见解
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作者:Seifert-Dávila Wolfram, Chaban Anastasiia, Baudin Florence, Girbig Mathias, Hauptmann Luis, Hoffmann Thomas, Duss Olivier, Eustermann Sebastian, Müller Christoph W
| 期刊: | Nucleic Acids Research | 影响因子: | 13.100 |
| 时间: | 2025 | 起止号: | 2025 Jan 7; 53(1):gkae1174 |
| doi: | 10.1093/nar/gkae1174 | 种属: | Yeast |
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