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A2 型 BTB 成员通过影响 SnRK2.3 的稳定性来减少种子萌发过程中的 ABA 反应。

Type A2 BTB Members Decrease the ABA Response during Seed Germination by Affecting the Stability of SnRK2.3 in .

机构信息

State Key Laboratory for Pharmaceutical Biotechnology, College of Life Sciences, Nanjing University, Nanjing 210093, China.

Shanghai Center for Plant Stress Biology, CAS Center for Excellence in Molecular Plant Sciences, Shanghai 201602, China.

出版信息

Int J Mol Sci. 2020 Apr 30;21(9):3153. doi: 10.3390/ijms21093153.

Abstract

The genome comprises eighty genes encoding BTB (broad-complex, tramtrack, and bric-a-brac) family proteins that are characterized with the BTB domain and that potentially serve as substrate adaptors for cullin-based E3-ligases. In addition to the BTB domain, most BTB proteins also contain various other interaction motifs that probably act as target recognition elements. Here, we report three members of the BTB-A2 subfamily that distinctly only contain the BTB domain, BTB-A2.1, BTB-A2.2, and BTB-A2.3, that negatively regulates abscisic acid (ABA) signaling in . , , and encoded cytoplasm- and nucleus-localized proteins and displayed highly overlapping expression patterns in tissues. Disruption of these three genes, but not single or double mutants, resulted in a decrease in ABA-induced inhibition of seed germination. Further analyses demonstrated the expression levels of these three genes were up-regulated by ABA, and their mutation increased ABA signalling. Importantly, protein-protein interaction assays showed that these three BTB-A2 proteins physically interacted with SnRK2.3. Moreover, biochemical and genetic assays indicated that BTB-A2.1, BTB-A2.2, and BTB-A2.3 decreased the stability of SnRK2.3 and attenuated the SnRK2.3 responsible for the ABA hypersensitive phenotype of seed germination. This report thus reveals that BTB-A2s serve as negative regulators for balancing the intensity of ABA signaling during seed germination.

摘要

基因组包含 80 个基因,编码 BTB(宽复合物、轨迹和布里克-布拉克)家族蛋白,这些蛋白的特征是具有 BTB 结构域,并且可能作为基于 cullin 的 E3 连接酶的底物衔接物。除了 BTB 结构域外,大多数 BTB 蛋白还包含各种其他相互作用基序,这些基序可能作为靶标识别元件起作用。在这里,我们报告了 BTB-A2 亚家族的三个成员,它们仅明显含有 BTB 结构域,分别为 BTB-A2.1、BTB-A2.2 和 BTB-A2.3,这些成员负调控. 、. 和. 编码的细胞质和核定位蛋白中的脱落酸 (ABA) 信号通路,并在. 组织中表现出高度重叠的表达模式。这些三个基因的破坏,但不是单个或双突变体,导致 ABA 诱导的种子萌发抑制减少。进一步的分析表明,这些三个基因的表达水平被 ABA 上调,并且它们的突变增加了 ABA 信号。重要的是,蛋白-蛋白相互作用测定表明,这三个 BTB-A2 蛋白与 SnRK2.3 物理相互作用。此外,生化和遗传分析表明,BTB-A2.1、BTB-A2.2 和 BTB-A2.3 降低了 SnRK2.3 的稳定性,并减弱了 SnRK2.3 对种子萌发 ABA 超敏表型的作用。因此,本报告揭示了 BTB-A2 作为负调节剂,在种子萌发过程中平衡 ABA 信号的强度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd5d/7246803/9d88c8836fc3/ijms-21-03153-g001.jpg

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