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使用反型 NLR 等位基因将 NLR 免疫受体与 camta3 突变体中的自身免疫相匹配。

Matching NLR Immune Receptors to Autoimmunity in camta3 Mutants Using Antimorphic NLR Alleles.

机构信息

Department of Biology, University of Copenhagen, 2200 Copenhagen N, Denmark.

Department of Biology, University of Copenhagen, 2200 Copenhagen N, Denmark; The Novo Nordisk Foundation Center for Biosustainability, Technical University of Denmark, 2800 Hørsholm, Denmark.

出版信息

Cell Host Microbe. 2017 Apr 12;21(4):518-529.e4. doi: 10.1016/j.chom.2017.03.005.

Abstract

To establish infection, pathogens deploy effectors to modify or remove host proteins. Plant immune receptors with nucleotide-binding, leucine-rich repeat domains (NLRs) detect these modifications and trigger immunity. Plant NLRs thus guard host "guardees." A corollary is that autoimmunity may result from inappropriate NLR activation because mutations in plant guardees could trigger corresponding NLR guards. To explore these hypotheses, we expressed 108 dominant-negative (DN) Arabidopsis NLRs in various lesion mimic mutants, including camta3, which exhibits autoimmunity. CAMTA3 was previously described as a negative regulator of immunity, and we find that autoimmunity in camta3 is fully suppressed by expressing DNs of two NLRs, DSC1 and DSC2. Additionally, expression of either NLR triggers cell death that can be suppressed by CAMTA3 expression. These findings support a model in which DSC1 and DSC2 guard CAMTA3, and they suggest that other negative regulators of immunity may similarly represent guardees.

摘要

为了建立感染,病原体部署效应子来修饰或去除宿主蛋白。具有核苷酸结合、亮氨酸丰富重复结构域(NLR)的植物免疫受体检测这些修饰并触发免疫。因此,植物 NLR 保护宿主“受保护者”。相应的推论是,自身免疫可能是由于 NLR 激活不当引起的,因为植物受保护者的突变可能会触发相应的 NLR 保护者。为了探索这些假说,我们在各种病变模拟突变体中表达了 108 个显性负(DN)拟南芥 NLR,包括表现出自免疫的 camta3。CAMTA3 先前被描述为免疫的负调节剂,我们发现,通过表达 NLRs DSC1 和 DSC2 的两个 DN,camta3 的自免疫完全受到抑制。此外,表达任何一个 NLR 都会引发细胞死亡,而 CAMTA3 的表达可以抑制这种细胞死亡。这些发现支持了 DSC1 和 DSC2 保护 CAMTA3 的模型,并且它们表明其他免疫的负调节剂可能同样代表受保护者。

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