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Biology subjects

Hauptmann, L.

Publications and source records attributed to Hauptmann, L..

2 recordsLinked to original sources

Structural and kinetic insights into tRNA promoter engagement by yeast general transcription factor TFIIIC

Transcription of tRNA genes by RNA polymerase 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 cryo-EM and single-molecule FRET (smFRET) to reveal structural and real-time kinetic insights into how the 520 kDa yeast TFIIIC complex engages A- and B-box DNA motifs in the context of a tRNA gene promoter. Cryo-EM structures of {tau}A and {tau}B subcomplexes bound to the A- and B-box were obtained at 3.7 and 2.5 [A] resolution, respectively, while cryo-EM single particle mapping determined the specific distance and relative orientation of the {tau}A and {tau}B 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 {tau}A and the A-box in TFIIIB and Pol III recruitment following TFIIIC recognition of type II promoters.

biochemistry↗

Structural insights into human TFIIIC promoter recognition

Transcription factor IIIC (TFIIIC) recruits RNA polymerase (Pol) III to most of its target genes. Recognition of intragenic A- and B-box motifs in tRNA genes by TFIIIC modules {tau}A and {tau}B is the first critical step for tRNA synthesis but is mechanistically poorly understood. Here, we report cryo-EM structures of the human 624 kDa TFIIIC complex unbound and bound to a tRNA gene. The {tau}B module recognizes the B-box via DNA shape and sequence readout through the assembly of multiple winged-helix domains. TFIIIC220 forms an integral part of both {tau}A and {tau}B connecting the two subcomplexes via a [~]550 amino acid residue flexible linker. Our data provide a structural mechanism by which high-affinity B-box recognition anchors TFIIIC to promoter DNA and permits scanning for low-affinity A-boxes and TFIIIB for Pol III activation.

molecular biology↗