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Structures and Functions of the Multiple KOW Domains of Transcription Elongation Factor Spt5

机译:转录延伸因子Spt5的多个KOW域的结构和功能。

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摘要

The eukaryotic Spt4-Spt5 heterodimer forms a higher-order complex with RNA polymerase II (and I) to regulate transcription elongation. Extensive genetic and functional data have revealed diverse roles of Spt4-Spt5 in coupling elongation with chromatin modification and RNA-processing pathways. A mechanistic understanding of the diverse functions of Spt4-Spt5 is hampered by challenges in resolving the distribution of functions among its structural domains, including the five KOW domains in Spt5, and a lack of their high-resolution structures. We present high-resolution crystallographic results demonstrating that distinct structures are formed by the first through third KOW domains (KOW1-Linker1 [K1L1] and KOW2-KOW3) of Saccharomyces cerevisiae Spt5. The structure reveals that K1L1 displays a positively charged patch (PCP) on its surface, which binds nucleic acids in vitro, as shown in biochemical assays, and is important for in vivo function, as shown in growth assays. Furthermore, assays in yeast have shown that the PCP has a function that partially overlaps that of Spt4. Synthesis of our results with previous evidence suggests a model in which Spt4 and the K1L1 domain of Spt5 form functionally overlapping interactions with nucleic acids upstream of the transcription bubble, and this mechanism may confer robustness on processes associated with transcription elongation.
机译:真核生物Spt4-Spt5异二聚体与RNA聚合酶II(和I)形成更高阶的复合物,以调节转录延伸。大量的遗传和功能数据已经揭示了Spt4-Spt5在延长染色质修饰和RNA加工途径中的多种作用。对Spt4-Spt5的各种功能的机械理解受到解决其结构域(包括Spt5中的五个KOW域)之间功能分布的挑战的困扰,并且缺乏其高分辨率结构。我们提供了高分辨率的晶体学结果,证明了酿酒酵母Spt5的第一个到第三个KOW域(KOW1-Linker1 [K1L1]和KOW2-KOW3)形成了不同的结构。该结构表明,K1L1在其表面上显示带正电荷的贴片(PCP),如生化分析所示,在体外与核酸结合,而对体内功能至关重要,如生长分析所示。此外,酵母中的分析表明,PCP的功能与Spt4的功能部分重叠。我们的结果与先前证据的综合表明,存在这样一种模型,其中Spt4和Spt5的K1L1结构域与转录气泡上游的核酸形成功能重叠的相互作用,并且该机制可能赋予与转录延长相关的过程鲁棒性。

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