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NLR 我们到了吗?NLR 介导的免疫的核质协调。

NLR we there yet? Nucleocytoplasmic coordination of NLR-mediated immunity.

机构信息

Molecular Biology of Plant-Microbe Interactions Research Group, Albrecht-von-Haller-Institute for Plant Sciences, University of Goettingen, Julia-Lermontowa-Weg 3, 37077, Goettingen, Germany.

Biochemistry of Plant-Microbe Interactions, Dahlem Centre of Plant Sciences, Institute of Biology, Freie Universität Berlin, Königin-Luise-Str. 12-16, 14195, Berlin, Germany.

出版信息

New Phytol. 2022 Oct;236(1):24-42. doi: 10.1111/nph.18359. Epub 2022 Aug 4.

Abstract

Plant intracellular nucleotide-binding leucine-rich repeat immune receptors (NLRs) perceive the activity of pathogen-secreted effector molecules that, when undetected, promote colonisation of hosts. Signalling from activated NLRs converges with and potentiates downstream responses from activated pattern recognition receptors (PRRs) that sense microbial signatures at the cell surface. Efficient signalling of both receptor branches relies on the host cell nucleus as an integration point for transcriptional reprogramming, and on the macromolecular transport processes that mediate the communication between cytoplasm and nucleoplasm. Studies on nuclear pore complexes (NPCs), the nucleoporin proteins (NUPs) that compose NPCs, and nuclear transport machinery constituents that control nucleocytoplasmic transport, have revealed that they play important roles in regulating plant immune responses. Here, we discuss the contributions of nucleoporins and nuclear transport receptor (NTR)-mediated signal transduction in plant immunity with an emphasis on NLR immune signalling across the nuclear compartment boundary and within the nucleus. We also highlight and discuss cytoplasmic and nuclear functions of NLRs and their signalling partners and further consider the potential implications of NLR activation and resistosome formation in both cellular compartments for mediating plant pathogen resistance and programmed host cell death.

摘要

植物细胞内核苷酸结合富含亮氨酸重复免疫受体 (NLRs) 感知病原体分泌的效应分子的活性,这些效应分子在未被检测到时会促进宿主的定植。激活的 NLR 发出的信号与激活的模式识别受体 (PRRs) 的下游反应汇聚并增强,后者在细胞表面感知微生物特征。这两个受体分支的有效信号依赖于宿主细胞核作为转录重编程的整合点,以及介导细胞质和核质之间通讯的大分子运输过程。对核孔复合物 (NPCs)、构成 NPC 的核孔蛋白 (NUPs) 以及控制核质运输的核转运机制成分的研究表明,它们在调节植物免疫反应中发挥着重要作用。在这里,我们讨论了核孔蛋白和核转运受体 (NTR) 介导的信号转导在植物免疫中的贡献,重点介绍了 NLR 免疫信号在核区室边界和细胞核内的传递。我们还强调和讨论了 NLRs 及其信号伙伴的细胞质和核功能,并进一步考虑了 NLR 激活和抗性体形成在两个细胞区室中对介导植物病原体抗性和程序性宿主细胞死亡的潜在影响。

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