Bushnell David A, Westover Kenneth D, Davis Ralph E, Kornberg Roger D
Department of Structural Biology, Stanford University School of Medicine, Stanford, CA 94305-5126, USA.
Science. 2004 Feb 13;303(5660):983-8. doi: 10.1126/science.1090838.
The structure of the general transcription factor IIB (TFIIB) in a complex with RNA polymerase II reveals three features crucial for transcription initiation: an N-terminal zinc ribbon domain of TFIIB that contacts the "dock" domain of the polymerase, near the path of RNA exit from a transcribing enzyme; a "finger" domain of TFIIB that is inserted into the polymerase active center; and a C-terminal domain, whose interaction with both the polymerase and with a TATA box-binding protein (TBP)-promoter DNA complex orients the DNA for unwinding and transcription. TFIIB stabilizes an early initiation complex, containing an incomplete RNA-DNA hybrid region. It may interact with the template strand, which sets the location of the transcription start site, and may interfere with RNA exit, which leads to abortive initiation or promoter escape. The trajectory of promoter DNA determined by the C-terminal domain of TFIIB traverses sites of interaction with TFIIE, TFIIF, and TFIIH, serving to define their roles in the transcription initiation process.
通用转录因子IIB(TFIIB)与RNA聚合酶II形成的复合物结构揭示了转录起始的三个关键特征:TFIIB的N端锌带结构域,它在RNA从转录酶中排出的路径附近与聚合酶的“停靠”结构域接触;TFIIB的“手指”结构域,它插入到聚合酶活性中心;以及C端结构域,其与聚合酶以及TATA盒结合蛋白(TBP)-启动子DNA复合物的相互作用使DNA定向解旋和转录。TFIIB稳定了一个早期起始复合物,该复合物包含一个不完整的RNA-DNA杂交区域。它可能与模板链相互作用,模板链决定了转录起始位点的位置,并且可能干扰RNA的排出,这会导致流产起始或启动子逃逸。由TFIIB的C端结构域确定的启动子DNA轨迹穿过与TFIIE、TFIIF和TFIIH相互作用的位点,有助于确定它们在转录起始过程中的作用。