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Phosphorylation induces sequence-specific conformational switches in the RNA polymerase II C-terminal domain

机译:磷酸化在RNA聚合酶II C末端结构域中诱导特异性序列的构象开关

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The carboxy-terminal domain (CTD) of the RNA polymerase II (Pol II) large subunit cycles through phosphorylation states that correlate with progression through the transcription cycle and regulate nascent mRNA processing. Structural analyses of yeast and mammalian CTD are hampered by their repetitive sequences. Here we identify a region of the Drosophila melanogaster CTD that is essential for Pol II function in vivo and capitalize on natural sequence variations within it to facilitate structural analysis. Mass spectrometry and NMR spectroscopy reveal that hyper-Ser5 phosphorylation transforms the local structure of this region via proline isomerization. The sequence context of this switch tunes the activity of the phosphatase Ssu72, leading to the preferential de-phosphorylation of specific heptads. Together, context-dependent conformational switches and biased dephosphorylation suggest a mechanism for the selective recruitment of cis -proline-specific regulatory factors and region-specific modulation of the CTD code that may augment gene regulation in developmentally complex organisms.
机译:RNA聚合酶II(POL II)的羧基 - 末端结构域(CTD)通过磷酸化状态大的亚基循环,其通过转录循环与进展相关并调节新生mRNA加工。酵母和哺乳动物CTD的结构分析由其重复序列阻碍。在这里,我们鉴定了果蝇黑素转储CTD的一个地区,这对于体内POL II功能至关重要,并利用其中的自然序列变化来促进结构分析。质谱和NMR光谱揭示超SER5磷酸化通过脯氨酸异构化转变该区域的局部结构。该开关的序列上下文调节磷酸酶SSU72的活性,导致特定胚囊的优先脱磷酸化。依赖于上下文的构象交换机和偏见的去磷酸化表明了一种选择性地招募CIS-Polline的调控因子和区域特异性调制,该因素可以增加发育复杂生物中的基因调节的CTD代码。

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