Doamekpor Selom K, Schwer Beate, Sanchez Ana M, Shuman Stewart, Lima Christopher D
Structural Biology Program, Sloan-Kettering Institute, New York, New York 10065, USA.
Microbiology and Immunology Department, Weill Cornell Medical College, New York, New York 10065, USA.
RNA. 2015 Jan;21(1):113-23. doi: 10.1261/rna.048181.114. Epub 2014 Nov 20.
mRNA capping enzymes are directed to nascent RNA polymerase II (Pol2) transcripts via interactions with the carboxy-terminal domains (CTDs) of Pol2 and transcription elongation factor Spt5. Fission yeast RNA triphosphatase binds to the Spt5 CTD, comprising a tandem repeat of nonapeptide motif TPAWNSGSK. Here we report the crystal structure of a Pct1·Spt5-CTD complex, which revealed two CTD docking sites on the Pct1 homodimer that engage TPAWN segments of the motif. Each Spt5 CTD interface, composed of elements from both subunits of the homodimer, is dominated by van der Waals contacts from Pct1 to the tryptophan of the CTD. The bound CTD adopts a distinctive conformation in which the peptide backbone makes a tight U-turn so that the proline stacks over the tryptophan. We show that Pct1 binding to Spt5 CTD is antagonized by threonine phosphorylation. Our results fortify an emerging concept of an "Spt5 CTD code" in which (i) the Spt5 CTD is structurally plastic and can adopt different conformations that are templated by particular cellular Spt5 CTD receptor proteins; and (ii) threonine phosphorylation of the Spt5 CTD repeat inscribes a binary on-off switch that is read by diverse CTD receptors, each in its own distinctive manner.
信使核糖核酸(mRNA)加帽酶通过与RNA聚合酶II(Pol2)的羧基末端结构域(CTD)和转录延伸因子Spt5相互作用,被导向新生的Pol2转录本。裂殖酵母RNA三磷酸酶与Spt5 CTD结合,Spt5 CTD由九肽基序TPAWNSGSK的串联重复序列组成。在这里,我们报告了Pct1·Spt5-CTD复合物的晶体结构,该结构揭示了Pct1同二聚体上的两个CTD对接位点,它们与该基序的TPAWN片段相互作用。每个Spt5 CTD界面由同二聚体两个亚基的元件组成,主要由Pct1与CTD色氨酸之间的范德华接触主导。结合的CTD采用独特的构象,其中肽主链形成紧密的U形转弯,使脯氨酸堆积在色氨酸上。我们表明,苏氨酸磷酸化拮抗Pct1与Spt5 CTD的结合。我们的结果强化了一个新兴的“ Spt5 CTD密码”概念,其中:(i)Spt5 CTD在结构上具有可塑性,可以采用由特定细胞Spt5 CTD受体蛋白模板化的不同构象;(ii)Spt5 CTD重复序列的苏氨酸磷酸化刻写了一个二进制开-关开关,该开关由不同的CTD受体以各自独特的方式读取。