Kassavetis G A, Letts G A, Geiduschek E P
Department of Biology and Center for Molecular Genetics, University of California, San Diego, 9500 Gilman Drive, La Jolla, CA 92093-0634, USA.
EMBO J. 2001 Jun 1;20(11):2823-34. doi: 10.1093/emboj/20.11.2823.
Evidence for post-recruitment functions of yeast transcription factor (TF)IIIB in initiation of transcription was first provided by the properties of TFIIIB-RNA polymerase III-promoter complexes assembled with deletion mutants of its Brf and B" subunits that are transcriptionally inactive because they fail to open the promoter. The experiments presented here show that these defects can be repaired by unpairing short (3 or 5 bp) DNA segments spanning the transcription bubble of the open promoter complex. Analysis of this suppression phenomenon indicates that TFIIIB participates in two steps of promoter opening by RNA polymerase III that are comparable to the successive steps of promoter opening by bacterial RNA polymerase holoenzyme. B" deletions between amino acids 355 and 421 interfere with the initiating step of DNA strand separation at the upstream end of the transcription bubble. Removing an N-terminal domain of Brf interferes with downstream propagation of the transcription bubble to and beyond the transcriptional start site.
酵母转录因子(TF)IIIB在转录起始中的招募后功能的证据首先来自于用其Brf和B"亚基的缺失突变体组装的TFIIIB-RNA聚合酶III-启动子复合物的特性,这些突变体由于无法打开启动子而转录无活性。本文所展示的实验表明,跨越开放启动子复合物转录泡的短(3或5个碱基对)DNA片段解链可以修复这些缺陷。对这种抑制现象的分析表明,TFIIIB参与了RNA聚合酶III打开启动子的两个步骤,这与细菌RNA聚合酶全酶打开启动子的连续步骤相当。氨基酸355至421之间的B"缺失会干扰转录泡上游端DNA链分离的起始步骤。去除Brf的N端结构域会干扰转录泡向转录起始位点及转录起始位点之外的下游延伸。