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亚麻免疫受体L6和L7的比较分析表明了一种基于平衡的开关激活模型。

Comparative Analysis of the Flax Immune Receptors L6 and L7 Suggests an Equilibrium-Based Switch Activation Model.

作者信息

Bernoux Maud, Burdett Hayden, Williams Simon J, Zhang Xiaoxiao, Chen Chunhong, Newell Kim, Lawrence Gregory J, Kobe Bostjan, Ellis Jeffrey G, Anderson Peter A, Dodds Peter N

机构信息

CSIRO Agriculture, Canberra ACT 2601, Australia

School of Biological Sciences, Flinders University, Adelaide SA 5001, Australia.

出版信息

Plant Cell. 2016 Jan;28(1):146-59. doi: 10.1105/tpc.15.00303. Epub 2016 Jan 7.

Abstract

NOD-like receptors (NLRs) are central components of the plant immune system. L6 is a Toll/interleukin-1 receptor (TIR) domain-containing NLR from flax (Linum usitatissimum) conferring immunity to the flax rust fungus. Comparison of L6 to the weaker allele L7 identified two polymorphic regions in the TIR and the nucleotide binding (NB) domains that regulate both effector ligand-dependent and -independent cell death signaling as well as nucleotide binding to the receptor. This suggests that a negative functional interaction between the TIR and NB domains holds L7 in an inactive/ADP-bound state more tightly than L6, hence decreasing its capacity to adopt the active/ATP-bound state and explaining its weaker activity in planta. L6 and L7 variants with a more stable ADP-bound state failed to bind to AvrL567 in yeast two-hybrid assays, while binding was detected to the signaling active variants. This contrasts with current models predicting that effectors bind to inactive receptors to trigger activation. Based on the correlation between nucleotide binding, effector interaction, and immune signaling properties of L6/L7 variants, we propose that NLRs exist in an equilibrium between ON and OFF states and that effector binding to the ON state stabilizes this conformation, thereby shifting the equilibrium toward the active form of the receptor to trigger defense signaling.

摘要

NOD样受体(NLRs)是植物免疫系统的核心组成部分。L6是一种来自亚麻(Linum usitatissimum)的含Toll/白细胞介素-1受体(TIR)结构域的NLR,赋予对亚麻锈菌的免疫力。将L6与较弱的等位基因L7进行比较,在TIR和核苷酸结合(NB)结构域中鉴定出两个多态性区域,它们调节效应物配体依赖性和非依赖性细胞死亡信号传导以及受体与核苷酸的结合。这表明TIR和NB结构域之间的负功能相互作用使L7比L6更紧密地保持在无活性/ADP结合状态,从而降低了其转变为活性/ATP结合状态的能力,并解释了其在植物中的较弱活性。在酵母双杂交试验中,具有更稳定ADP结合状态的L6和L7变体未能与AvrL567结合,而检测到与信号传导活性变体的结合。这与当前预测效应物与无活性受体结合以触发激活的模型形成对比。基于L6/L7变体的核苷酸结合、效应物相互作用和免疫信号特性之间的相关性,我们提出NLRs存在于开启和关闭状态之间的平衡中,并且效应物与开启状态的结合稳定了这种构象,从而使平衡向受体的活性形式移动以触发防御信号传导。

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