在拟南芥中,CLE19通过BSL-BIN2模块抑制油菜素内酯信号输出,以维持BES1活性和花粉外胞图案。

IF 9.3 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Shuangshuang Wang, Shiting Zhang, Ying Yu, Jianzheng Wang, Jingya Wang, Mengyu Li, Jianan Lu, Juanying Ye, Hanji Li, Yeqiao Liu, Yuhan Zhao, Wen Song, Juan Dong, Jia Li, Chunming Liu, Hong Ma, Fang Chang
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引用次数: 0

摘要

花粉外壁是开花植物雄性生殖力的保护屏障和信号界面。它的精确模式取决于小孢子和绒毡层细胞之间的协调相互作用。虽然CLAVATA3/胚胎周围区域相关19 (CLE19)肽已被确定为小孢子衍生的“制动器”,限制了绒毛活动以维持外周发育稳态,但CLE19如何与激素信号通路整合仍然知之甚少。在这里,我们证明了CLE19通过参与定义的BSL-BIN2-BES1信号级联来减弱油菜素内酯(BR)信号输出。通过定量磷酸化蛋白质组学分析,我们发现CLE19影响多种BR信号组分的磷酸化,包括bsl型磷酸酶BSL1/2/3、gsk3样激酶BIN2和转录因子BES1。我们发现CLE19被其受体PXL1感知,PXL1直接与bsl型磷酸酶相互作用,激活gsk3样激酶BIN2,导致BES1丝氨酸残基S219和S223磷酸化。利用磷酸化死态和磷酸化模拟的BES1变体进行的功能分析证实,cle19依赖性磷酸化控制BES1核输出和降解,最终抑制花粉外皮模式所需的br响应转录输出。总之,我们的发现定义了一个肽-激素信号轴,通过翻译后调节调节转录因子活性,为植物生殖中如何通过细胞间信号整合维持发育稳健性提供了机制见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CLE19 suppresses brassinosteroid signaling output via the BSL-BIN2 module to maintain BES1 activity and pollen exine patterning in Arabidopsis.

The pollen exine serves as a protective barrier and signaling interface essential for male fertility in flowering plants. Its precise patterning depends on coordinated interactions between microspores and tapetal cells. While the CLAVATA3/EMBRYO SURROUNDING REGION-related 19 (CLE19) peptide has been identified as a microspore-derived "brake" that restricts tapetal activity to maintain exine developmental homeostasis, how CLE19 integrates with hormonal signaling pathways remains poorly understood. Here, we demonstrate that CLE19 attenuates brassinosteroid (BR) signaling output by engaging a defined BSL-BIN2-BES1 signaling cascade. Through quantitative phosphoproteomic analysis, we identified that CLE19 affects the phosphorylation of multiple BR signaling components, including BSL-type phosphatases BSL1/2/3, the GSK3-like kinase BIN2, and the transcription factor BES1. We show that CLE19 is perceived by its receptor PXL1, which directly interacts with BSL-type phosphatases to activate the GSK3-like kinase BIN2, leading to phosphorylation of BES1 at serine residues S219 and S223. Functional analyses using phospho-dead and phospho-mimic BES1 variants confirm that CLE19-dependent phosphorylation controls BES1 nuclear export and degradation, ultimately suppressing BR-responsive transcriptional outputs required for pollen exine patterning. Together, our findings define a peptide-hormone signaling axis that regulates transcription factor activity through post-translational regulation, providing mechanistic insight into how developmental robustness is maintained via intercellular signal integration in plant reproduction.

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来源期刊
Journal of Integrative Plant Biology
Journal of Integrative Plant Biology 生物-生化与分子生物学
CiteScore
18.00
自引率
5.30%
发文量
220
审稿时长
3 months
期刊介绍: Journal of Integrative Plant Biology is a leading academic journal reporting on the latest discoveries in plant biology.Enjoy the latest news and developments in the field, understand new and improved methods and research tools, and explore basic biological questions through reproducible experimental design, using genetic, biochemical, cell and molecular biological methods, and statistical analyses.
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