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Role of TAF15b in transcriptional regulation of autonomous pathway for flowering

机译:TAF15B在开花自主途径转录调控中的作用

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摘要

The autonomous pathway promotes flowering by repressing a major flowering repressor, FLOWERING LOCUS C (FLC). Approximately 30 genes are involved in this pathway, and several of them are related to RNA processing; however, the molecular basis of the transcriptional regulation of FLC is yet to be understood. Recently, we discovered a new autonomous pathway gene, TATA-binding protein-associated factor 15b (TAF15b), which has a RNA recognition motif (RRM) and represses the level of FLC transcripts. TAF15b regulates the expression of FLC by directly interacting with RNA polymerase II (Pol II) at the transcription start sites on both the sense and antisense strands of the FLC locus. In addition to the transcriptional regulation in the nucleus, TAF15b accumulates in processing bodies (p-bodies), which are cytoplasmic RNA granules involved in translational repression, during heat stress. Here we discuss the implications of our findings and suggest a dual role of TAF15b in both transcriptional and translational regulation.
机译:通过压制一个主要的开花阻遏物,开花的遗迹C(FLC)促进开花。在该途径中涉及大约30个基因,其中几种与RNA加工有关;然而,FLC的转录调节的分子基础尚未理解。最近,我们发现了一种新的自主途径基因,TATA结合蛋白相关因子15B(TAF15B),其具有RNA识别基序(RRM)并抑制FLC转录物的水平。 TAF15B通过在FLC基因座的意义和反义链中直接与RNA聚合酶II(POL II)直接相互作用来调节FLC的表达。除了核中的转录调节之外,TAF15B还累积在加工体(P-型)中,其是在热应激期间涉及平移抑制的细胞质RNA颗粒。在这里,我们讨论了我们的研究结果的影响,并表明TAF15B在转录和翻译规则中的双重作用。

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