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抗病小体:植物免疫机器
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作者 韩志富 曹禺 +2 位作者 黄诗嘉 贾奥琳 柴继杰 《中国科学:化学》 CAS CSCD 北大核心 2024年第5期726-733,共8页
在与各种病原微生物长期互作的过程中,植物演化出时空上紧密关联的多层防御系统来对抗各种病虫害的威胁.其中关键的一层是由细胞内NLR免疫受体(Nucleotide binding domain and leucine-rich repeat-containing receptors,NLRs)通过识别... 在与各种病原微生物长期互作的过程中,植物演化出时空上紧密关联的多层防御系统来对抗各种病虫害的威胁.其中关键的一层是由细胞内NLR免疫受体(Nucleotide binding domain and leucine-rich repeat-containing receptors,NLRs)通过识别病原菌分泌到植物细胞内的效应蛋白(Effectors)进而激活的特异性免疫反应(Effector-triggered immunity,ETI).这一层免疫具有特异性强、反应快、反应强度高等特点,并能够引发植物的系统获得性免疫反应,因此这种形式的免疫受到了植物抗病及育种领域的广泛关注.近几年,在我们实验室及国际国内同行的共同努力下,我们对植物不同类型NLRs的静息状态的维持、特异性识别效应蛋白及NLRs由静息态转变为激活状态的分子机制都有了深入的认识.据此,我们创新性的提出了NLRs激活状态的结构—抗病小体(Resistosomes)这一概念,并通过生化实验和植物体内实验揭示了植物不同种类抗病小体具有阳离子通道或者NAD+水解酶活性,我们也提出了钙离子作为共同的下游信号,在不同类型的抗病小体介导的ETI免疫反应中行使作用.抗病小体的发现为深入研究NLRs如何介导植物抗病及超敏反应奠定了坚实基础,这一概念的提出也迅速得到了植物抗病领域同行的高度认同.此外,抗病小体的发现也为培育广谱抗病性作物提供了理论依据. 展开更多
关键词 抗病小体 植物免疫 先天免疫 NLR
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Structural insight into chitin perception by chitin elicitor receptor kinase 1 of Oryza sativa
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作者 Li Xu Jizong Wang +2 位作者 Yu Xiao zhifu han Jijie Chai 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2023年第1期235-248,共14页
Plants have developed innate immune systems to fight against pathogenic fungi by monitoring pathogenic signals known as pathogen-associated molecular patterns(PAMP)and have established endo symbiosis with arbuscular m... Plants have developed innate immune systems to fight against pathogenic fungi by monitoring pathogenic signals known as pathogen-associated molecular patterns(PAMP)and have established endo symbiosis with arbuscular mycorrhizal(AM)fungi through recognition of mycorrhizal(Myc)factors.Chitin elicitor receptor kinase 1 of Oryza sativa subsp.Japonica(OsC ERK1)plays a bifunctional role in mediating both chitin-triggered immunity and symbiotic relationships with AM fungi.However,it remains unclear whether OsC ERK1 can directly recognize chitin molecules.In this study,we show that OsC ERK1 binds to the chitin hexamer((NAG)6)and tetramer((NAG)4)directly and determine the crystal structure of the OsC ERK1-(NAG)6complex at 2?.The structure shows that one OsC ERK1 is associated with one(NAG)6.Upon recognition,chitin hexamer binds OsC ERK1 by interacting with the shallow groove on the surface of LysM 2.These structural findings,complemented by mutational analyses,demonstrate that LysM 2 is crucial for recognition of both(NAG)6and(NAG)4.Altogether,these findings provide structural insights into the ability of OsC ERK1 in chitin perception,which will lead to a better understanding of the role of OsCERK1 in mediating both immunity and symbiosis in rice. 展开更多
关键词 CHITIN immune response OsCERK1 recognition mechanism symbiotic reaction
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植物受体激酶的结构与功能研究进展 被引量:1
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作者 韩志富 肖裕 +4 位作者 宋文 王继纵 林光忠 张晓晓 柴继杰 《科学通报》 EI CAS CSCD 北大核心 2018年第28期2921-2931,共11页
作为多细胞营固着生长的生命体,植物需要对外界多变的环境及内部不同组织细胞之间协调发育的多样信号做出精确的反应.与多细胞动物主要通过数量巨大的GPCR等受体蛋白参与细胞与环境及细胞之间的交流不同,植物主要靠数目庞大的植物受体... 作为多细胞营固着生长的生命体,植物需要对外界多变的环境及内部不同组织细胞之间协调发育的多样信号做出精确的反应.与多细胞动物主要通过数量巨大的GPCR等受体蛋白参与细胞与环境及细胞之间的交流不同,植物主要靠数目庞大的植物受体激酶来完成相应功能.通过30多年的深入研究,植物受体激酶的功能研究取得了极大的进展,研究发现,植物受体激酶参与植物多种多样的生理病理过程,包括生长发育、气孔发育、分生组织发育、抗病、花粉管吸引和自交不亲和等.这些受体激酶的结构生物学研究在近10年取得了一系列重要的成果,使我们对各种受体激酶的配体识别及活化机制有了系统的认识.2017年国家自然科学奖二等奖授予"油菜素内酯等受体激酶的结构与功能研究",也是对这些成果的肯定.本综述对参与不同过程的受体激酶结构进行总结描述,随后对受体激酶的识别及活化规律进行总结,最后对该领域尚未解决的问题及研究方向提出展望. 展开更多
关键词 植物 受体激酶 配体识别 受体活化 结构生物学
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SERK Family Receptor-like Kinases Function as Co-receptors with PXY for Plant Vascular Development 被引量:11
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作者 Heqiao Zhang Xiaoya Lin +3 位作者 zhifu han Jizong Wang Li-Jia Qu Jijie Chai 《Molecular Plant》 SCIE CAS CSCD 2016年第10期1406-1414,共9页
In Arabidopsis, the CLAVATA3/EMBRYO SURROUNDING REGION-RELATED (CLE) peptides play important roles in regulating proliferation and differentiation of plant-specific stem cells. Although receptors of CLEs are reporte... In Arabidopsis, the CLAVATA3/EMBRYO SURROUNDING REGION-RELATED (CLE) peptides play important roles in regulating proliferation and differentiation of plant-specific stem cells. Although receptors of CLEs are reported to be leucine-rich repeat receptor kinases, the mechanisms underlying CLE-induced receptor activation remain largely unknown. Here we show that SOMATIC EMBRYOGENESIS RECEPTOR KINASEs (SERKs) serve as co-receptors in CLE41/TDIF-PXY signaling to regulate plant vascular development. TDIF induces interaction of its receptor PXY with SERKs in vitro and in vivo. Furthermore, the serk1-1 serk2-1 bakl-5 mutant plants are less sensitive to TDIF, phenocopying the pxy mutant with a compromised promotion of procambial cell proliferation. Crystal structure of the PXY-TDIF-SERK2 complex reveals that the last amino acid of TDIF conserved among CLEs and other evolutionary-related peptides is important for the interaction between SERK2 and PXY. Taken together, our current study identifies SERKs as signaling components of the TDIF-PXY pathway and suggests a conserved activation mechanism of CLE receptors. 展开更多
关键词 receptor-like kinase SERK PXY-TDIF vascular development CO-RECEPTOR
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Structural basis for differential recognition of brassinolide by its receptors 被引量:6
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作者 Ji She zhifu han +1 位作者 Bin Zhou Jijie Chai 《Protein & Cell》 SCIE CSCD 2013年第6期475-482,共8页
Brassinosteroids,a group of plant steroid hormones,reg-ulate many aspects of plant growth and development.We and other have previously solved the crystal structures of BRI1(LRR)in complex with brassinolide,the most ac... Brassinosteroids,a group of plant steroid hormones,reg-ulate many aspects of plant growth and development.We and other have previously solved the crystal structures of BRI1(LRR)in complex with brassinolide,the most active brassinosteroid identifi ed thus far.Although these studies provide a structural basis for the recognition of brassi-nolide by its receptor BRI1,it still remains poorly under-stood how the hormone differentiates among its con-served receptors.Here we present the crystal structure of the BRI1 homolog BRL1 in complex with brassinolide.The structure shows that subtle differences around the brassinolide binding site can generate a striking effect on its recognition by the BRI1 family of receptors.Structural comparison of BRL1 and BRI1 in their brassinolide-bound forms reveals the molecular basis for differential binding of brassinolide to its different receptors,which can be used for more effi cient design of plant growth regulators for agricultural practice.On the basis of our structural studies and others’data,we also suggest possible mech-anisms for the activation of BRI1 family receptors. 展开更多
关键词 X-ray crystallography leucine-rich repeat domain BRASSINOSTEROID BRL1
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Structural Insight into Recognition of Plant Peptid Hormones by Receptors 被引量:2
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作者 Heqiao Zhang zhifu han +1 位作者 Wen Song Jijie Chai 《Molecular Plant》 SCIE CAS CSCD 2016年第11期1454-1463,共10页
Secreted signaling peptides or peptide hormones play crucial roles in plant growth and development through coordination of cell-cell communication. Perception of peptide hormones in plants generally relies on membrane... Secreted signaling peptides or peptide hormones play crucial roles in plant growth and development through coordination of cell-cell communication. Perception of peptide hormones in plants generally relies on membrane-localized receptor kinases (RKs). Progress has recently been made in structural elucidation of interactions between posttranslationally modified peptide hormones and RKs. The structural studies suggest conserved receptor binding and activation mechanisms of this type of peptide hormones involving their conserved C-termini. Here, we review these structural data and discuss how the conserved mecha- nisms can be used to match peptide-RK pairs. 展开更多
关键词 peptide hormones small signaling peptides receptor kinases ligand recognition posttranslationalmodifications
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A loop matters for FTO substrate selection 被引量:1
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作者 zhifu han Ning Huang +1 位作者 Tianhui Niu Jijie Chai 《Protein & Cell》 SCIE CSCD 2010年第7期616-620,共5页
Recent studies have unequivocally established the link between FTO and obesity.FTO was biochemically shown to belong to the AlkB-like family DNA/RNA demethylase.However,FTO differs from other AlkB members in that it h... Recent studies have unequivocally established the link between FTO and obesity.FTO was biochemically shown to belong to the AlkB-like family DNA/RNA demethylase.However,FTO differs from other AlkB members in that it has unique substrate specificity and contains an extended C-terminus with unknown functions.Insight into the substrate selection mechanism and a functional clue to the C-terminus of FTO were gained from recent structural and biochemical studies.These data would be valuable to design FTO-specific inhibitors that can be potentially translated into therapeutic agents for treatment of obesity or obesity-related diseases. 展开更多
关键词 FTO gained SPECIFICITY
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