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Flowering and genome integrity control by a nuclear matrix protein in Arabidopsis

机译:拟南芥中核基质蛋白对开花和基因组完整性的控制

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The matrix attachment regions (MARs) binding proteins could finely orchestrate temporal and spatial gene expression during development. In Arabidopsis, transposable elements (TEs) and TE-like repeat sequences are transcriptionally repressed or attenuated by the coordination of many key players including DNA methyltransferases, histone deacetylases, histone methyltransferases and the siRNA pathway, which help to protect genomic integrity and control multiple developmental processes such as flowering. We have recently reported that an AT-hook nuclear matrix binding protein, TRANSPOSABLE ELEMENT SILENCING VIA AT-HOOK (TEK), participates in a histone deacetylation (HDAC) complex to silence TEs and genes containing TE-like sequence, including AtMu1, FWA and FLOWERING LOCUS C (FLC) in Ler background. We have shown that TEK knockdown causes increased histone acetylation, reduced H3K9me2 and moderate reduction of DNA methylation in the target loci, leading to the derepression of FLC and FWA, as well as TE reactivation. Here we discuss the role of TEK as a putative MAR binding protein which functions in the maintenance of genome integrity and in flowering control by silencing TEs and repeatcontaining genes.
机译:基质附着区(MARs)结合蛋白可以在发育过程中很好地协调时间和空间基因的表达。在拟南芥中,可转座元件(TEs)和类似TE的重复序列通过许多关键分子(包括DNA甲基转移酶,组蛋白脱乙酰基酶,组蛋白甲基转移酶和siRNA途径)的协调而被转录抑制或减弱,这有助于保护基因组完整性并控制多种发育开花等过程。最近,我们报道了一个AT钩核基质结合蛋白,通过AT-HOOK(TEK)转移可沉默元素,参与了组蛋白脱乙酰化(HDAC)复合物,以沉默TEs和含有TE样序列的基因,包括AtMu1,FWA和在Ler背景中开花的地点C(FLC)。我们已经证明,TEK敲低会导致组蛋白乙酰化增加,H3K9me2减少和目标基因座中DNA甲基化的适度降低,从而导致FLC和FWA的抑制以及TE的重新激活。在这里,我们讨论了TEK作为推定的MAR结合蛋白的作用,该蛋白通过沉默TEs和包含重复序列的基因在维持基因组完整性和开花控制中起作用。

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