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Signaling from the plasma-membrane localized plant immune receptor RPM1 requires self-association of the full-length protein.质膜定位的植物免疫受体 RPM1 的信号转导需要全长蛋白的自我缔合。
Proc Natl Acad Sci U S A. 2017 Aug 29;114(35):E7385-E7394. doi: 10.1073/pnas.1708288114. Epub 2017 Aug 14.
2
The complex domain architecture of SAMD9 family proteins, predicted STAND-like NTPases, suggests new links to inflammation and apoptosis.SAMD9家族蛋白复杂的结构域架构(预测为类STAND NTP酶)提示了其与炎症和凋亡的新联系。
Biol Direct. 2017 May 25;12(1):13. doi: 10.1186/s13062-017-0185-2.
3
Legionella effector Lpg1137 shuts down ER-mitochondria communication through cleavage of syntaxin 17.军团菌效应蛋白 Lpg1137 通过切割突触融合蛋白 17 来阻断内质网-线粒体通讯。
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4
Molecular Mechanisms Regulating Cell Fusion and Heterokaryon Formation in Filamentous Fungi.调控丝状真菌细胞融合和异核体形成的分子机制。
Microbiol Spectr. 2017 Mar;5(2). doi: 10.1128/microbiolspec.FUNK-0015-2016.
5
The NBS-LRR architectures of plant R-proteins and metazoan NLRs evolved in independent events.植物R蛋白和后生动物NLRs的NBS-LRR结构是在独立事件中进化而来的。
Proc Natl Acad Sci U S A. 2017 Jan 31;114(5):1063-1068. doi: 10.1073/pnas.1619730114. Epub 2017 Jan 17.
6
Intracellular innate immune surveillance devices in plants and animals.动植物细胞内的固有免疫监视装置。
Science. 2016 Dec 2;354(6316). doi: 10.1126/science.aaf6395.
7
Animal NLRs provide structural insights into plant NLR function.动物NLR为植物NLR功能提供了结构上的见解。
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Direct targeting of membrane fusion by SNARE mimicry: Convergent evolution of Legionella effectors.通过SNARE模拟直接靶向膜融合:嗜肺军团菌效应蛋白的趋同进化
Proc Natl Acad Sci U S A. 2016 Aug 2;113(31):8807-12. doi: 10.1073/pnas.1608755113. Epub 2016 Jul 19.
10
Pathogen perception by NLRs in plants and animals: Parallel worlds.植物和动物中NLRs的病原体识别:平行世界。
Bioessays. 2016 Aug;38(8):769-81. doi: 10.1002/bies.201600046. Epub 2016 Jun 24.

NLR 监测必需的 SEC-9 SNARE 蛋白可在丝状真菌的同种异体识别中诱导程序性细胞死亡。

NLR surveillance of essential SEC-9 SNARE proteins induces programmed cell death upon allorecognition in filamentous fungi.

机构信息

The Plant and Microbial Biology Department, University of California, Berkeley, CA 94720-3102.

Environmental Genomics and Systems Biology Division, Lawrence Berkeley National Laboratory, Berkeley, CA 94720.

出版信息

Proc Natl Acad Sci U S A. 2018 Mar 6;115(10):E2292-E2301. doi: 10.1073/pnas.1719705115. Epub 2018 Feb 20.

DOI:10.1073/pnas.1719705115
PMID:29463729
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5878007/
Abstract

In plants and metazoans, intracellular receptors that belong to the NOD-like receptor (NLR) family are major contributors to innate immunity. Filamentous fungal genomes contain large repertoires of genes encoding for proteins with similar architecture to plant and animal NLRs with mostly unknown function. Here, we identify and molecularly characterize patatin-like phospholipase-1 (PLP-1), an NLR-like protein containing an N-terminal patatin-like phospholipase domain, a nucleotide-binding domain (NBD), and a C-terminal tetratricopeptide repeat (TPR) domain. PLP-1 guards the essential SNARE protein SEC-9; genetic differences at and function to trigger allorecognition and cell death in two distantly related fungal species, and Analyses of population samples revealed that and alleles are highly polymorphic, segregate into discrete haplotypes, and show transspecies polymorphism. Upon fusion between cells bearing incompatible and alleles, allorecognition and cell death are induced, which are dependent upon physical interaction between SEC-9 and PLP-1. The central NBD and patatin-like phospholipase activity of PLP-1 are essential for allorecognition and cell death, while the TPR domain and the polymorphic SNARE domain of SEC-9 function in conferring allelic specificity. Our data indicate that fungal NLR-like proteins function similar to NLR immune receptors in plants and animals, showing that NLRs are major contributors to innate immunity in plants and animals and for allorecognition in fungi.

摘要

在植物和后生动物中,属于 NOD 样受体 (NLR) 家族的细胞内受体是先天免疫的主要贡献者。丝状真菌基因组包含大量编码具有与植物和动物 NLR 相似结构的蛋白的基因,这些基因的功能大多未知。在这里,我们鉴定并分子表征了 patatin-like phospholipase-1 (PLP-1),这是一种 NLR 样蛋白,包含一个 N 端 patatin-like phospholipase 结构域、一个核苷酸结合域 (NBD) 和一个 C 端四肽重复 (TPR) 结构域。PLP-1 保护必需的 SNARE 蛋白 SEC-9;和 功能上的遗传差异可触发两个亲缘关系较远的真菌物种,和 之间的异体识别和细胞死亡。对 种群样本的分析表明,和 等位基因高度多态性,可分为离散的单倍型,并表现出跨物种多态性。当携带不兼容的 和 等位基因的细胞融合时,会诱导异体识别和细胞死亡,这依赖于 SEC-9 和 PLP-1 之间的物理相互作用。PLP-1 的中央 NBD 和 patatin-like phospholipase 活性对于异体识别和细胞死亡是必需的,而 PLP-1 的 TPR 结构域和多态性 SNARE 结构域则在赋予等位基因特异性方面发挥作用。我们的数据表明,真菌 NLR 样蛋白的功能类似于植物和动物中的 NLR 免疫受体,表明 NLR 是植物和动物先天免疫以及真菌异体识别的主要贡献者。