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拟南芥NAC转录因子中的蛋白质内在无序:ANAC013和ANAC046的转录激活及其与RCD1的相互作用

Protein intrinsic disorder in Arabidopsis NAC transcription factors: transcriptional activation by ANAC013 and ANAC046 and their interactions with RCD1.

作者信息

O'Shea Charlotte, Kryger Mikael, Stender Emil G P, Kragelund Birthe B, Willemoës Martin, Skriver Karen

机构信息

*Department of Biology, University of Copenhagen, 5 Ole Maaloesvej, Copenhagen DK-2200, Denmark.

出版信息

Biochem J. 2015 Jan 15;465(2):281-94. doi: 10.1042/BJ20141045.

Abstract

Protein ID (intrinsic disorder) plays a significant, yet relatively unexplored role in transcription factors (TFs). In the present paper, analysis of the transcription regulatory domains (TRDs) of six phylogenetically representative, plant-specific NAC [no apical meristem, ATAF (Arabidopsis transcription activation factor), cup-shaped cotyledon] TFs shows that the domains are present in similar average pre-molten or molten globule-like states, but have different patterns of order/disorder and MoRFs (molecular recognition features). ANAC046 (Arabidopsis NAC 046) was selected for further studies because of its simple MoRF pattern and its ability to interact with RCD1 (radical-induced cell death 1). Experiments in yeast and thermodynamic characterization suggest that its single MoRF region is sufficient for both transcriptional activation and interaction with RCD1. The remainder of the large regulatory domain is unlikely to contribute to the interaction, since the domain and truncations thereof have similar affinities for RCD1, which are also similar for ANAC013-RCD1 interactions. However, different enthalpic and entropic contributions to binding were revealed for ANAC046 and ANAC013, suggestive of differences in binding mechanisms. Although substitution of both hydrophobic and acidic residues of the ANAC046 MoRF region abolished binding, substitution of other residues, even with α-helix-breaking proline, was less disruptive. Together, the biophysical analyses suggest that RCD1-ANAC046 complex formation does not involve folding-upon-binding, but rather fuzziness or an unknown structure in ANAC046. We suggest that the ANAC046 regulatory domain functions as an entropic chain with a terminal hot spot interacting with RCD1. RCD1, a cellular hub, may be able to interact with many different TFs by exploiting their ID-based flexibility, as demonstrated for its interactions with ANAC046 and ANAC013.

摘要

蛋白质ID(内在无序性)在转录因子(TFs)中发挥着重要但相对未被充分探索的作用。在本文中,对六种系统发育代表性的植物特异性NAC[无顶端分生组织、ATAF(拟南芥转录激活因子)、杯状子叶]转录因子的转录调控结构域(TRDs)进行分析表明,这些结构域以相似的平均预熔态或类熔球态存在,但具有不同的有序/无序模式和分子识别特征(MoRFs)。由于其简单的MoRF模式及其与RCD1(自由基诱导的细胞死亡1)相互作用的能力,选择了ANAC046(拟南芥NAC 046)进行进一步研究。酵母实验和热力学表征表明,其单个MoRF区域足以实现转录激活以及与RCD1的相互作用。大的调控结构域的其余部分不太可能对这种相互作用有贡献,因为该结构域及其截短体对RCD1具有相似的亲和力,这对于ANAC013 - RCD1相互作用也是相似的。然而,揭示了ANAC046和ANAC013在结合时焓和熵的贡献不同,这表明结合机制存在差异。尽管ANAC046 MoRF区域的疏水和酸性残基的取代都消除了结合,但其他残基的取代,即使是用破坏α螺旋的脯氨酸,干扰性也较小。综合起来,生物物理分析表明RCD1 - ANAC046复合物的形成不涉及结合时的折叠,而是ANAC046中的模糊性或未知结构。我们认为ANAC046调控结构域作为一条熵链,其末端热点与RCD1相互作用。RCD1作为一个细胞枢纽,可能能够通过利用基于内在无序性的灵活性与许多不同的转录因子相互作用,就像其与ANAC046和ANAC013的相互作用所证明的那样。

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