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首页> 外文期刊>The Plant Cell >The Arabidopsis thaliana homolog of yeast BRE1 has a function in cell cycle regulation during early leaf and root growth
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The Arabidopsis thaliana homolog of yeast BRE1 has a function in cell cycle regulation during early leaf and root growth

机译:酵母BRE1的拟南芥同源物在早期叶和根生长期间具有细胞周期调节功能

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Chromatin modification and transcriptional activation are novel roles for E3 ubiquitin ligase proteins that have been mainly associated with ubiquitin-dependent proteolysis. We identified HISTONE MONOUBIQUITINATION1 (HUB1) (and its homolog HUB2) in Arabidopsis thaliana as RING E3 ligase proteins with a function in organ growth. We show that HUB1 is a functional homolog of the human and yeast BRE1 proteins because it monoubiquitinated histone H2B in an in vitro assay. Hub knockdown mutants had pale leaf coloration, modified leaf shape, reduced rosette biomass, and inhibited primary root growth. One of the alleles had been designated previously as ang4-1. Kinematic analysis of leaf and root growth together with flow cytometry revealed defects in cell cycle activities. The hub1-1 (ang4-1) mutation increased cell cycle duration in young leaves and caused an early entry into the endocycles. Transcript profiling of shoot apical tissues of hub1-1 (ang4-1) indicated that key regulators of the G2-to-M transition were misexpressed. Based on the mutant characterization, we postulate that HUB1 mediates gene activation and cell cycle regulation probably through chromatin modifications.
机译:染色质修饰和转录激活是E3泛素连接酶蛋白的新角色,这种蛋白主要与泛素依赖性蛋白水解有关。我们在拟南芥中鉴定出HISTONE MONOUBIQUITINATION1(HUB1)(及其同源物HUB2)为RING E3连接酶蛋白,在器官生长中具有功能。我们显示HUB1是人类和酵母BRE1蛋白的功能同源物,因为它在体外测定中单泛素化组蛋白H2B。 Hub敲除突变体具有浅叶色,叶形改变,莲座丛生物量减少和抑制初生根生长。等位基因之一以前被指定为ang4-1。对叶和根生长的运动学分析以及流式细胞仪揭示了细胞周期活动中的缺陷。 hub1-1(ang4-1)突变增加了幼叶的细胞周期持续时间,并导致其早期进入内循环。 hub1-1(ang4-1)的茎尖组织的转录谱分析表明,G2-to-M过渡的关键调控因子表达不正确。基于突变体的表征,我们推测HUB1可能通过染色质修饰来介导基因激活和细胞周期调控。

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