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A-ZIP53,一种显性负调控蛋白,揭示了 bZIP53、bZIP10 和 bZIP25 异二聚体形成的分子机制,该过程参与拟南芥种子成熟。

A-ZIP53, a dominant negative reveals the molecular mechanism of heterodimerization between bZIP53, bZIP10 and bZIP25 involved in Arabidopsis seed maturation.

机构信息

National Agri-Food Biotechnology Institute, Knowledge City, Sector 81, Mohali, Punjab, 140306, India.

Department of Biotechnology, Panjab University, Sector 14, Chandigarh, 160014, India.

出版信息

Sci Rep. 2017 Oct 30;7(1):14343. doi: 10.1038/s41598-017-14167-5.

Abstract

In Arabidopsis, maturation phase, an intricate process in seed formation is tightly regulated by the DNA binding activity of protagonist basic leucine zipper 53 (bZIP53) transcription factor and its heterodimerizing partners, bZIP10 and bZIP25. Structural determinants responsible for heterodimerization specificity of bZIP53 are poorly understood. Analysis of amino acid sequences of three bZIPs does not identify interactions that may favor heterodimerization. Here, we describe a designed dominant negative termed A-ZIP53 that has a glutamic acid-rich amphipathic peptide sequence attached to N-terminal of bZIP53 leucine zipper. Circular dichroism (CD) and mass spectrometry studies with equimolar mixture of three bZIP proteins in pairs showed no heterodimer formation whereas A-ZIP53 interacted and formed stable heterodimers with bZIP53, bZIP10, and bZIP25. A-ZIP53 electrostatically mimics DNA and can overcome repulsion between basic DNA binding regions of three bZIP proteins. Gel shift experiments showed that A-ZIP53 can inhibit the DNA binding of three proteins. CD studies demonstrated the specificity of A-ZIP53 as it did not interact with bZIP39 and bZIP72. Transient co-transfections in Arabidopsis protoplasts showed that A-ZIP53 inhibited three bZIPs and their putative heterodimers-mediated transactivation of GUS reporter gene. Furthermore, four newly designed acidic extensions were evaluated for their ability to interact with three bZIPs.

摘要

在拟南芥中,成熟阶段是种子形成的一个复杂过程,受到主角碱性亮氨酸拉链 53(bZIP53)转录因子及其异二聚体伙伴 bZIP10 和 bZIP25 的 DNA 结合活性的严格调控。负责 bZIP53 异二聚体特异性的结构决定因素了解甚少。对三个 bZIP 的氨基酸序列分析没有发现可能有利于异二聚体形成的相互作用。在这里,我们描述了一种称为 A-ZIP53 的设计性显性负突变体,它在 bZIP53 亮氨酸拉链的 N 端连接了一个富含谷氨酸的两亲肽序列。等摩尔比的三种 bZIP 蛋白混合物的圆二色性(CD)和质谱研究表明,没有形成异二聚体,而 A-ZIP53 与 bZIP53、bZIP10 和 bZIP25 相互作用并形成稳定的异二聚体。A-ZIP53 静电模拟 DNA 并可以克服三种 bZIP 蛋白碱性 DNA 结合区之间的排斥力。凝胶迁移实验表明,A-ZIP53 可以抑制三种蛋白的 DNA 结合。CD 研究表明,A-ZIP53 具有特异性,因为它不与 bZIP39 和 bZIP72 相互作用。在拟南芥原生质体中的瞬时共转染实验表明,A-ZIP53 抑制了三种 bZIP 及其假定的异二聚体介导的 GUS 报告基因的转录激活。此外,还评估了四个新设计的酸性扩展片段与三种 bZIP 相互作用的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b279/5662769/0978e02ce0b6/41598_2017_14167_Fig1_HTML.jpg

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