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一种经过结构重新设计的内在无序肽,其可选择性抑制茉莉酸信号通路中的植物转录因子。

A structure-redesigned intrinsically disordered peptide that selectively inhibits a plant transcription factor in jasmonate signaling.

作者信息

Takaoka Yousuke, Liu Ruiqi, Ueda Minoru

机构信息

Department of Chemistry, Graduate School of Science, Tohoku University, 6-3, Aramaki-Aza Aoba, Aoba-ku, Sendai 980-8578, Japan.

Department of Molecular and Chemical Life Sciences, Graduate School of Life Sciences, Tohoku University, Sendai, Japan.

出版信息

PNAS Nexus. 2024 Jul 26;3(8):pgae312. doi: 10.1093/pnasnexus/pgae312. eCollection 2024 Aug.

Abstract

Plant hormone-related transcription factors (TFs) are key regulators of plant development, responses to environmental stress such as climate changes, pathogens, and pests. These TFs often function as families that exhibit genetic redundancy in higher plants, and are affected by complex crosstalk mechanisms between different plant hormones. These properties make it difficult to analyze and control them in many cases. In this study, we introduced a chemical inhibitor to manipulate plant hormone-related TFs, focusing on the jasmonate (JA) and ethylene (ET) signaling pathways, with the key TFs MYC2/3/4 and EIN3/EIL1. This study revealed that JAZ10, the binding domain of the repressor involved in the desensitization of both TFs, is an intrinsically disordered region in the absence of binding partners. Chemical inhibitors have been designed based on this interaction to selectively inhibit MYC TFs while leaving EIN3/EIL1 unaffected. This peptide inhibitor effectively disrupts MYC-mediated responses while activating EIN3-mediated responses and successfully uncouples the crosstalk between JA and ET signaling in . Furthermore, the designed peptide inhibitor was also shown to selectively inhibit the activity of MpMYC, an ortholog of AtMYC in , demonstrating its applicability across different plant species. This underscores the potential of using peptide inhibitors for specific TFs to elucidate hormone crosstalk mechanisms in non-model plants without genetic manipulation. Such a design concept for chemical fixation of the disordered structure is expected to limit the original multiple binding partners and provide useful chemical tools in chemical biology research.

摘要

植物激素相关转录因子(TFs)是植物发育以及对气候变化、病原体和害虫等环境胁迫作出反应的关键调节因子。这些转录因子通常以家族形式发挥作用,在高等植物中表现出基因冗余,并且受到不同植物激素之间复杂的相互作用机制的影响。在许多情况下,这些特性使得对它们进行分析和控制变得困难。在本研究中,我们引入了一种化学抑制剂来操纵植物激素相关转录因子,重点关注茉莉酸(JA)和乙烯(ET)信号通路,以及关键转录因子MYC2/3/4和EIN3/EIL1。这项研究表明,JAZ10作为参与这两种转录因子脱敏作用的阻遏物的结合结构域,在没有结合伴侣的情况下是一个内在无序区域。基于这种相互作用设计了化学抑制剂,以选择性抑制MYC转录因子,而不影响EIN3/EIL1。这种肽抑制剂有效地破坏了MYC介导的反应,同时激活了EIN3介导的反应,并成功解开了拟南芥中JA和ET信号之间的相互作用。此外,所设计的肽抑制剂还被证明可以选择性抑制番茄中AtMYC的直系同源物MpMYC的活性,证明了其在不同植物物种中的适用性。这突出了使用针对特定转录因子的肽抑制剂来阐明非模式植物中激素相互作用机制而无需进行基因操作的潜力。这种对无序结构进行化学固定的设计概念有望限制原始的多个结合伴侣,并在化学生物学研究中提供有用的化学工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ab3/11319934/f2513c7042ba/pgae312f1.jpg

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