Aaron W Lawson, Andrea Flores-Ibarra, Yu Cao, Chunpeng An, Ulla Neumann, Monika Gunkel, Isabel M L Saur, Jijie Chai, Elmar Behrmann, Paul Schulze-Lefert
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The effector adopts an RNase-like fold when bound to MLA13 in planta, similar to crystal structures of other RNase-like AVR<sub>A</sub> effectors unbound to receptors. AVR<sub>A13</sub>-1 interacts via its basal loops with MLA13 C-terminal leucine-rich repeats (LRRs) and the central winged helix domain (WHD). Co-expression of structure-guided MLA13 and AVR<sub>A13</sub>-1 substitution variants show that the receptor-effector interface plays an essential role in mediating immunity-associated plant cell death. Furthermore, by combining structural information from the MLA13-AVR<sub>A13</sub>-1 heterocomplex with sequence alignments of other MLA receptors, we engineered a single amino acid substitution in MLA7 that enables expanded effector detection of AVR<sub>A13</sub>-1 and the virulent variant AVR<sub>A13</sub>-V2. In contrast to the pentameric conformation of previously reported effector-activated CNL resistosomes, MLA13 was purified and resolved as a stable heterodimer from an in planta expression system. Our study suggests a common structural principle for RNase-like effector binding to MLAs and highlights the utility of structure-guided engineering of plant immune receptors for broadening their pathogen effector recognition capabilities.</p>","PeriodicalId":50533,"journal":{"name":"EMBO Journal","volume":" ","pages":""},"PeriodicalIF":9.4000,"publicationDate":"2025-02-13","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"The barley MLA13-AVR<sub>A13</sub> heterodimer reveals principles for immunoreceptor recognition of RNase-like powdery mildew effectors.\",\"authors\":\"Aaron W Lawson, Andrea Flores-Ibarra, Yu Cao, Chunpeng An, Ulla Neumann, Monika Gunkel, Isabel M L Saur, Jijie Chai, Elmar Behrmann, Paul Schulze-Lefert\",\"doi\":\"10.1038/s44318-025-00373-9\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>Co-evolution between cereals and pathogenic grass powdery mildew fungi is exemplified by sequence diversification of an allelic series of barley resistance genes encoding Mildew Locus A (MLA) nucleotide-binding leucine-rich repeat (NLR) immunoreceptors with an N-terminal coiled-coil domain (CNLs). Each immunoreceptor recognises a matching, strain-specific powdery mildew effector encoded by an avirulence gene (AVR<sub>a</sub>). We present here the cryo-EM structure of barley MLA13 in complex with its cognate effector AVR<sub>A13</sub>-1. The effector adopts an RNase-like fold when bound to MLA13 in planta, similar to crystal structures of other RNase-like AVR<sub>A</sub> effectors unbound to receptors. AVR<sub>A13</sub>-1 interacts via its basal loops with MLA13 C-terminal leucine-rich repeats (LRRs) and the central winged helix domain (WHD). Co-expression of structure-guided MLA13 and AVR<sub>A13</sub>-1 substitution variants show that the receptor-effector interface plays an essential role in mediating immunity-associated plant cell death. 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引用次数: 0
摘要
大麦抗性基因的等位基因序列多样化,编码霉斑A (MLA)核苷酸结合富亮氨酸重复序列(NLR)免疫受体,具有n端卷曲结构域(cnl),证明了谷物与致病性草白粉病真菌之间的共同进化。每个免疫受体识别一个匹配的,菌株特异性白粉病效应由一个无毒基因(AVRa)编码。本文研究了大麦MLA13及其同源效应物AVRA13-1复合物的低温电镜结构。该效应物在植物中与MLA13结合时呈rnase样折叠,与其他未与受体结合的rnase样AVRA效应物的晶体结构相似。AVRA13-1通过其基环与MLA13 c -末端富亮氨酸重复序列(lrr)和中心翼螺旋结构域(WHD)相互作用。结构导向的MLA13和AVRA13-1替代变异体的共表达表明,受体-效应物界面在介导免疫相关的植物细胞死亡中起着重要作用。此外,通过结合MLA13-AVRA13-1杂合体的结构信息和其他MLA受体的序列比对,我们在MLA7中设计了一个单氨基酸替代,从而扩大了AVRA13-1和毒性变异AVRA13-V2的效应检测。与先前报道的效应激活CNL抵抗体的五聚体构象相反,MLA13被纯化并作为稳定的异源二聚体从植物内表达系统中分离出来。我们的研究提出了rnase样效应物与MLAs结合的共同结构原理,并强调了结构引导的植物免疫受体工程在扩大其病原体效应物识别能力方面的实用性。
The barley MLA13-AVRA13 heterodimer reveals principles for immunoreceptor recognition of RNase-like powdery mildew effectors.
Co-evolution between cereals and pathogenic grass powdery mildew fungi is exemplified by sequence diversification of an allelic series of barley resistance genes encoding Mildew Locus A (MLA) nucleotide-binding leucine-rich repeat (NLR) immunoreceptors with an N-terminal coiled-coil domain (CNLs). Each immunoreceptor recognises a matching, strain-specific powdery mildew effector encoded by an avirulence gene (AVRa). We present here the cryo-EM structure of barley MLA13 in complex with its cognate effector AVRA13-1. The effector adopts an RNase-like fold when bound to MLA13 in planta, similar to crystal structures of other RNase-like AVRA effectors unbound to receptors. AVRA13-1 interacts via its basal loops with MLA13 C-terminal leucine-rich repeats (LRRs) and the central winged helix domain (WHD). Co-expression of structure-guided MLA13 and AVRA13-1 substitution variants show that the receptor-effector interface plays an essential role in mediating immunity-associated plant cell death. Furthermore, by combining structural information from the MLA13-AVRA13-1 heterocomplex with sequence alignments of other MLA receptors, we engineered a single amino acid substitution in MLA7 that enables expanded effector detection of AVRA13-1 and the virulent variant AVRA13-V2. In contrast to the pentameric conformation of previously reported effector-activated CNL resistosomes, MLA13 was purified and resolved as a stable heterodimer from an in planta expression system. Our study suggests a common structural principle for RNase-like effector binding to MLAs and highlights the utility of structure-guided engineering of plant immune receptors for broadening their pathogen effector recognition capabilities.
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