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转录因子 POPEYE 负调控 bHLH Ib 基因的表达以维持铁稳态。

The transcription factor POPEYE negatively regulates the expression of bHLH Ib genes to maintain iron homeostasis.

机构信息

CAS Key Laboratory of Tropical Plant Resources and Sustainable Use, Xishuangbanna Tropical Botanical Garden, Kunming, Yunnan 650223, China.

The College of Life Sciences, University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

J Exp Bot. 2023 Apr 18;74(8):2754-2767. doi: 10.1093/jxb/erad057.

Abstract

Iron (Fe) is an essential trace element for plants. When suffering from Fe deficiency, plants modulate the expression of Fe deficiency-responsive genes to promote Fe uptake. POPEYE (PYE) is a key bHLH (basic helix-loop-helix) transcription factor involved in Fe homeostasis. However, the molecular mechanism of PYE regulating the Fe deficiency response remains elusive in Arabidopsis. We found that the overexpression of PYE attenuates the expression of Fe deficiency-responsive genes. PYE directly represses the transcription of bHLH Ib genes (bHLH38, bHLH39, bHLH100, and bHLH101) by associating with their promoters. Although PYE contains an ethylene response factor-associated amphiphilic repression (EAR) motif, it does not interact with the transcriptional co-repressors TOPLESS/TOPLESS-RELATED (TPL/TPRs). Sub-cellular localization analysis indicated that PYE localizes in both the cytoplasm and nucleus. PYE contains a nuclear export signal (NES) which is required for the cytoplasmic localization of PYE. Mutation of the NES amplifies the repression function of PYE, resulting in down-regulation of Fe deficiency-responsive genes. Co-expression assays indicated that three bHLH IVc members (bHLH104, bHLH105/ILR3, and bHLH115) facilitate the nuclear accumulation of PYE. Conversely, PYE indirectly represses the transcription activation ability of bHLH IVc. Additionally, PYE directly negatively regulates its own transcription. This study provides new insights into the Fe deficiency response signalling pathway and enhances the understanding of PYE functions in Arabidopsis.

摘要

铁(Fe)是植物必需的微量元素。当植物遭受缺铁时,会调节缺铁应答基因的表达,以促进铁的吸收。POPEYE(PYE)是参与铁稳态的关键 bHLH(碱性螺旋-环-螺旋)转录因子。然而,PYE 调节缺铁应答的分子机制在拟南芥中仍不清楚。我们发现,PYE 的过表达会减弱缺铁应答基因的表达。PYE 通过与启动子结合,直接抑制 bHLH Ib 基因(bHLH38、bHLH39、bHLH100 和 bHLH101)的转录。尽管 PYE 含有乙烯反应因子相关的两亲性抑制(EAR)基序,但它不与转录共抑制因子 TOPLESS/TOPLESS-RELATED(TPL/TPRs)相互作用。亚细胞定位分析表明,PYE 定位于细胞质和细胞核中。PYE 含有核输出信号(NES),该信号对于 PYE 的细胞质定位是必需的。NES 的突变增强了 PYE 的抑制功能,导致缺铁应答基因的下调。共表达分析表明,三个 bHLH IVc 成员(bHLH104、bHLH105/ILR3 和 bHLH115)促进了 PYE 的核积累。相反,PYE 间接抑制 bHLH IVc 的转录激活能力。此外,PYE 直接负调控其自身的转录。本研究为铁应答信号通路提供了新的见解,并增强了对 PYE 在拟南芥中功能的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/440a/10797486/e7396823b4a1/erad057_fig1.jpg

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