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Transcription Factor Functional Protein-Protein Interactions in Plant Defense Responses

机译:植物防御反应中的转录因子功能蛋白与蛋白质的相互作用。

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Responses to biotic stress in plants lead to dramatic reprogramming of gene expression, favoring stress responses at the expense of normal cellular functions. Transcription factors are master regulators of gene expression at the transcriptional level, and controlling the activity of these factors alters the transcriptome of the plant, leading to metabolic and phenotypic changes in response to stress. The functional analysis of interactions between transcription factors and other proteins is very important for elucidating the role of these transcriptional regulators in different signaling cascades. In this review, we present an overview of protein-protein interactions for the six major families of transcription factors involved in plant defense: basic leucine zipper containing domain proteins (bZIP), amino-acid sequence WRKYGQK (WRKY), myelocytomatosis related proteins (MYC), myeloblastosis related proteins (MYB), APETALA2/ ETHYLENE-RESPONSIVE ELEMENT BINDING FACTORS (AP2/EREBP) and no apical meristem (NAM), Arabidopsis transcription activation factor (ATAF), and cup-shaped cotyledon (CUC) (NAC). We describe the interaction partners of these transcription factors as molecular responses during pathogen attack and the key components of signal transduction pathways that take place during plant defense responses. These interactions determine the activation or repression of response pathways and are crucial to understanding the regulatory networks that modulate plant defense responses.
机译:植物对生物胁迫的反应导致基因表达的急剧重编程,有利于胁迫反应,但会损害正常的细胞功能。转录因子是转录水平上基因表达的主要调节者,控制这些因子的活性会改变植物的转录组,从而导致响应胁迫而发生代谢和表型变化。转录因子与其他蛋白质之间相互作用的功能分析对于阐明这些转录调节因子在不同信号级联反应中的作用非常重要。在这篇综述中,我们概述了涉及植物防御的六个主要转录因子家族的蛋白质-蛋白质相互作用:包含域蛋白的基本亮氨酸拉链(bZIP),氨基酸序列WRKYGQK(WRKY),骨髓瘤病相关蛋白(MYC ),成纤维细胞病相关蛋白(MYB),APETALA2 /乙烯响应元素结合因子(AP2 / EREBP),无根分生组织(NAM),拟南芥转录激活因子(ATAF)和杯状子叶(CUC)(NAC)。我们将这些转录因子的相互作用伙伴描述为病原体侵袭期间的分子应答,以及植物防御应答期间发生的信号转导途径的关键组成部分。这些相互作用决定了反应途径的激活或抑制,对于理解调节植物防御反应的调控网络至关重要。

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