Zhang Zhengjian, English Brian P, Grimm Jonathan B, Kazane Stephanie A, Hu Wenxin, Tsai Albert, Inouye Carla, You Changjiang, Piehler Jacob, Schultz Peter G, Lavis Luke D, Revyakin Andrey, Tjian Robert
Transcription Imaging Consortium, Janelia Research Campus, Howard Hughes Medical Institute, Ashburn, Virginia 20147, USA.
Department of Chemistry, The Scripps Research Institute, La Jolla, California 92037 USA.
Genes Dev. 2016 Sep 15;30(18):2106-2118. doi: 10.1101/gad.285395.116.
Transcription of protein-encoding genes in eukaryotic cells requires the coordinated action of multiple general transcription factors (GTFs) and RNA polymerase II (Pol II). A "step-wise" preinitiation complex (PIC) assembly model has been suggested based on conventional ensemble biochemical measurements, in which protein factors bind stably to the promoter DNA sequentially to build a functional PIC. However, recent dynamic measurements in live cells suggest that transcription factors mostly interact with chromatin DNA rather transiently. To gain a clearer dynamic picture of PIC assembly, we established an integrated in vitro single-molecule transcription platform reconstituted from highly purified human transcription factors and complemented it by live-cell imaging. Here we performed real-time measurements of the hierarchal promoter-specific binding of TFIID, TFIIA, and TFIIB. Surprisingly, we found that while promoter binding of TFIID and TFIIA is stable, promoter binding by TFIIB is highly transient and dynamic (with an average residence time of 1.5 sec). Stable TFIIB-promoter association and progression beyond this apparent PIC assembly checkpoint control occurs only in the presence of Pol II-TFIIF. This transient-to-stable transition of TFIIB-binding dynamics has gone undetected previously and underscores the advantages of single-molecule assays for revealing the dynamic nature of complex biological reactions.
真核细胞中蛋白质编码基因的转录需要多种通用转录因子(GTF)和RNA聚合酶II(Pol II)的协同作用。基于传统的整体生化测量,有人提出了一种“逐步”的预起始复合物(PIC)组装模型,即蛋白质因子依次稳定地结合到启动子DNA上,以构建功能性的PIC。然而,最近在活细胞中的动态测量表明,转录因子大多与染色质DNA进行短暂的相互作用。为了更清晰地了解PIC组装的动态过程,我们建立了一个由高度纯化的人类转录因子重构的体外单分子转录平台,并通过活细胞成像对其进行补充。在这里,我们对TFIID、TFIIA和TFIIB的层次化启动子特异性结合进行了实时测量。令人惊讶的是,我们发现虽然TFIID和TFIIA与启动子的结合是稳定的,但TFIIB与启动子的结合是高度短暂和动态的(平均停留时间为1.5秒)。只有在存在Pol II-TFIIF的情况下,TFIIB与启动子的稳定结合以及越过这个明显的PIC组装检查点的进展才会发生。TFIIB结合动力学的这种从短暂到稳定的转变以前未被发现,这突出了单分子检测在揭示复杂生物反应动态性质方面的优势。