Laboratorio de Genética Molecular, Epigenética, Desarrollo y Evolución de plantas, Instituto de Ecología, Universidad Nacional Autónoma de México, 3er Circuito Ext. Junto a J. Botánico, Ciudad Universitaria. UNAM, México D.F. 04510, Mexico.
Plant Sci. 2024 Mar;340:111975. doi: 10.1016/j.plantsci.2024.111975. Epub 2024 Jan 3.
The epigenetic complex Trithorax (TrxG) regulates gene transcription through post-translational histone modifications and is involved in a wide range of developmental processes. ULTRAPETALA1 (ULT1) is a SAND domain plant-exclusive TrxG protein that regulates the H3K4me3 active mark to counteract PcG repression. ULT1 has been identified to be involved in multiple tissue-specific processes. In the Arabidopsis root, ULT1 is required to maintain the stem cell niche, a role that is independent of the histone methyltransferase ATX1. Here we show the contribution of ULT2 in the maintenance of root stem cell niche. We also analyzed the gene expression in the ult1, ult2, and ult1ult2 mutants, evidencing three ways in which ULT1 and ULT2 regulate gene expression, one of them, where ULT1 or ULT2 regulate specific genes each, another where ULT1 and ULT2 act redundantly, as well as a regulation that requires of ULT1 and ULT2 together, supporting a coregulation, never reported. Furthermore, we also evidenced the participation of ULT1 in transcriptional repression synergically with CLF, a key histone methyltransferase of PcG.
表观遗传复合物 Trithorax (TrxG) 通过翻译后组蛋白修饰来调节基因转录,并参与广泛的发育过程。ULTRAPETALA1 (ULT1) 是一种 SAND 结构域植物特有的 TrxG 蛋白,它调节 H3K4me3 活性标记以抵消 PcG 抑制。已确定 ULT1 参与多种组织特异性过程。在拟南芥根中,ULT1 被要求维持干细胞龛,其作用独立于组蛋白甲基转移酶 ATX1。在这里,我们展示了 ULT2 在维持根干细胞龛中的作用。我们还分析了 ult1、ult2 和 ult1ult2 突变体中的基因表达,证明了 ULT1 和 ULT2 调节基因表达的三种方式,其中之一是 ULT1 或 ULT2 分别调节特定基因,另一种是 ULT1 和 ULT2 冗余调节,以及需要 ULT1 和 ULT2 共同调节的方式,支持了从未报道过的共调控。此外,我们还证明了 ULT1 参与转录抑制与 PcG 的关键组蛋白甲基转移酶 CLF 协同作用。