bHLH121

bHLH121
  • 文章类型: Journal Article
    铁是植物生长发育必需的微量营养素。在拟南芥中,涉及多种bHLH转录因子(TFs)的复杂调节网络控制铁的稳态。在这些TFs中,bHLH121起着至关重要的作用。bHLH121在体内与进化枝IVcbHLHTF相互作用,并激活FIT和进化枝IbbHLHTF的表达,以刺激铁的摄取。目前尚不清楚bHLH121和进化枝IVcbHLHTFs如何共同有效地维持铁稳态。在这里,我们发现,涉及bhlh121和一个进化枝IVcbHLH的双重功能丧失突变体显示出比每个单一突变体更严重的缺铁性生长缺陷。我们还发现,在四个分支IVcbHLHTF中,当bHLH34和bHLH105过表达时,可以部分补充bhlh121与铁相关的生长缺陷。这些数据,以及蛋白质定位分析,支持bHLH121和进化枝IVcbHLHTF协同作用以调节铁稳态,并且不同的bHLH121/进化枝IVc和进化枝IVc/进化枝IVc蛋白复合物参与此过程。
    Iron is an essential micronutrient for plant growth and development. In Arabidopsis thaliana, an intricate regulatory network involving several basic helix-loop-helix (bHLH) transcription factors controls the homeostasis of iron. Among these transcription factors, bHLH121 plays a crucial role. bHLH121 interacts in vivo with clade IVc bHLH transcription factors and activates the expression of FIT and clade Ib bHLH transcription factors to stimulate the uptake of iron. How bHLH121 and clade IVc bHLH transcription factors function collectively and efficiently to maintain iron homeostasis is still unclear. Herein, we found that double loss-of-function mutants involving bhlh121 and one of the clade IVc bHLH transcription factors displayed more severe iron deficiency-associated growth defects than each of the single mutants. We also found that among the four clade IVc bHLH transcription factors, only bHLH34 and bHLH105 could partially complement the iron-associated growth defects of bhlh121 when overexpressed. These data, together with protein localization analysis, support that bHLH121 and clade IVc bHLH transcription factors act synergistically to regulate iron homeostasis and that different bHLH121/clade IVc and clade IVc/clade IVc protein complexes are involved in this process.
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  • 文章类型: Journal Article
    铁(Fe)是植物生长和发育的重要微量营养素,但由于Fe依赖性产生活性氧(ROS),任何过量的Fe都是有毒的。因此,铁稳态必须受到严格调控。在拟南芥中,通过调节与铁摄取相关的基因的表达,已经确定了转录因子的级联参与该过程的调节,运输,和存储。最近,研究表明,为了应对缺铁,bHLH121/URI(IRT1的上游调控器)直接激活参与该调控网络的几个基因的表达。还显示bHLH121与ILR3(bHLH105)及其同源物相互作用。本文表明,bHLH121对于植物对Fe过量反应的主要标记的表达是必需的,铁蛋白基因(即FER1、FER3和FER4)。bHLH121通过直接结合其启动子来调节铁蛋白基因的表达,在与ILR3-PYE抑制复合物相同的基因座上。因此,这项研究强调了BHLH121,PYE,和ILR3形成调节铁蛋白基因表达的拮抗开关链。讨论了这一发现的含义。
    Iron (Fe) is an important micronutrient for plant growth and development but any excess of Fe is toxic because of the Fe-dependent generation of reactive oxygen species (ROS). Thus, Fe homeostasis must be tightly regulated. In Arabidopsis thaliana, a cascade of transcription factors has been identified as involved in the regulation of this process by modulating the expression of genes related to Fe uptake, transport, and storage. Recently, it was demonstrated that in response to Fe deficiency, bHLH121/URI (UPSTREAM REGULATOR OF IRT1) directly activates the expression of several genes involved in this regulatory network. It was also shown that bHLH121 interacts with ILR3 (bHLH105) and its homologs. Herein it is shown that bHLH121 is necessary for the expression of the main markers of the plant responses to Fe excess, the ferritin genes (i.e. FER1, FER3, and FER4). bHLH121 regulates ferritin genes expression by directly binding to their promoters, at the same locus than the ILR3-PYE repressive complex. Therefore, this study highlight that bHLH121, PYE, and ILR3 form a chain of antagonistic switches that regulate the expression of ferritin genes. The implication of this finding is discussed.
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  • 文章类型: Journal Article
    在中性或碱性土壤中生长的植物中普遍存在铁(Fe)缺乏。植物已经进化出调节铁稳态的复杂机制,确保生存。在拟南芥中,类铁缺乏诱导转录因子(FIT)是铁缺乏反应的关键调节因子。FIT在铁缺乏下被碱性螺旋-环-螺旋(bHLH)IVc转录因子(TFs)间接激活;然而,尚不清楚哪种蛋白质充当接头来介导bHLHIVcTFs对FIT的激活。在这项研究中,我们描述了bHLH121的功能,并证明它与FIT启动子直接相关。我们发现bHLH121的功能丧失突变会导致严重的铁缺乏症状,减少Fe积累,和破坏与Fe稳态相关的基因的表达。遗传分析表明,FIT对bHLH121具有上位性,FIT过表达部分挽救了bhlh121突变体。进一步的研究表明,bHLHIVcTFs与bHLH121相互作用并促进其核积累。我们证明了bHLH121具有DNA结合活性,可以结合FIT和bHLHIb基因的启动子,但是我们没有发现它对这些基因具有直接的转录激活或抑制活性。同时,我们发现bHLH121在其下游起作用,并且是bHLHIVcTFs的直接靶标,其表达是由铁缺乏以bHLHIVc依赖性方式诱导的。一起来看,这些结果证实,bHLH121与bHLHIVcTFs一起发挥功能,正向调节FIT的表达,因此在维持拟南芥的Fe稳态中起关键作用。
    Iron (Fe) deficiency is prevalent in plants grown in neutral or alkaline soil. Plants have evolved sophisticated mechanisms that regulate Fe homeostasis, ensuring survival. In Arabidopsis, FER-LIKE IRON DEFICIENCY-INDUCED TRANSCRIPTION FACTOR (FIT) is a crucial regulator of Fe-deficiency response. FIT is activated indirectly by basic helix-loop-helix (bHLH) IVc transcription factors (TFs) under Fe deficiency; however, it remains unclear which protein(s) act as the linker to mediate the activation of FIT by bHLH IVc TFs. In this study, we characterize the functions of bHLH121 and demonstrate that it directly associates with the FIT promoter. We found that loss-of-function mutations of bHLH121 cause severe Fe-deficiency symptoms, reduced Fe accumulation, and disrupted expression of genes associated with Fe homeostasis. Genetic analysis showed that FIT is epistatic to bHLH121 and FIT overexpression partially rescues the bhlh121 mutant. Further investigations revealed that bHLH IVc TFs interact with and promote nuclear accumulation of bHLH121. We demonstrated that bHLH121 has DNA-binding activity and can bind the promoters of the FIT and bHLH Ib genes, but we did not find that it has either direct transcriptional activation or repression activity toward these genes. Meanwhile, we found that bHLH121 functions downstream of and is a direct target of bHLH IVc TFs, and its expression is induced by Fe deficiency in a bHLH IVc-dependent manner. Taken together, these results establish that bHLH121 functions together with bHLH IVc TFs to positively regulate the expression of FIT and thus plays a pivotal role in maintaining Fe homeostasis in Arabidopsis.
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