The Sainsbury Laboratory, University of East Anglia, Norwich Research Park, Norwich, NR4 7UH, UK.
New Phytol. 2024 Jul;243(1):345-361. doi: 10.1111/nph.19818. Epub 2024 May 17.
Nucleotide-binding domain and leucine-rich repeat (NLR) proteins with pathogen sensor activities have evolved to initiate immune signaling by activating helper NLRs. However, the mechanisms underpinning helper NLR activation by sensor NLRs remain poorly understood. Although coiled coil (CC) type sensor NLRs such as the Potato virus X disease resistance protein Rx have been shown to activate the oligomerization of their downstream helpers NRC2, NRC3 and NRC4, the domains involved in sensor-helper signaling are not known. Here, we used Agrobacterium tumefaciens-mediated transient expression in Nicotiana benthamiana to show that the nucleotide-binding (NB) domain within the NB-ARC of Rx is necessary and sufficient for oligomerization and immune signaling of downstream helper NLRs. In addition, the NB domains of the disease resistance proteins Gpa2 (cyst nematode resistance), Rpi-amr1, Rpi-amr3 (oomycete resistance) and Sw-5b (virus resistance) are also sufficient to activate their respective downstream NRC helpers. Using transient expression in the lettuce (Lactuca sativa), we show that Rx (both as full length or as NB domain truncation) and its helper NRC2 form a minimal functional unit that can be transferred from solanaceous plants (lamiids) to Campanulid species. Our results challenge the prevailing paradigm that NLR proteins exclusively signal via their N-terminal domains and reveal a signaling activity for the NB domain of NRC-dependent sensor NLRs. We propose a model in which helper NLRs can perceive the status of the NB domain of their upstream sensors.
核苷酸结合域和富含亮氨酸重复(NLR)蛋白具有病原体传感器活性,通过激活辅助 NLR 来启动免疫信号。然而,传感器 NLR 激活辅助 NLR 的机制仍知之甚少。虽然已表明卷曲螺旋(CC)型传感器 NLR,如马铃薯 X 病毒抗性蛋白 Rx,可激活其下游辅助蛋白 NRC2、NRC3 和 NRC4 的寡聚化,但传感器-辅助信号转导所涉及的结构域尚不清楚。在这里,我们使用根癌农杆菌介导的瞬时表达在 Nicotiana benthamiana 中显示,Rx 的 NB-ARC 中的核苷酸结合(NB)结构域对于下游辅助 NLR 的寡聚化和免疫信号转导是必需和充分的。此外,抗性蛋白 Gpa2(胞囊线虫抗性)、Rpi-amr1、Rpi-amr3(卵菌抗性)和 Sw-5b(病毒抗性)的 NB 结构域也足以激活其各自的下游 NRC 辅助蛋白。通过在生菜(Lactuca sativa)中的瞬时表达,我们表明 Rx(全长或 NB 结构域截断)及其辅助 NRC2 形成一个最小的功能单位,可从茄科植物(lamids)转移到桔梗科物种。我们的结果挑战了 NLR 蛋白仅通过其 N 端结构域进行信号转导的主流观点,并揭示了 NRC 依赖性传感器 NLR 的 NB 结构域的信号转导活性。我们提出了一个模型,其中辅助 NLR 可以感知其上游传感器的 NB 结构域的状态。