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典型文献
TRAF proteins as key regulators of plant development and stress responses
文献摘要:
Tumor necrosis factor receptor-associated factor (TRAF) proteins are conserved in higher eukaryotes and play key roles in transducing cellular signals across different organelles.They are characterized by their C-terminal region(TRAF-C domain) containing seven to eight anti-parallel β-sheets,also known as the meprin and TRAF-C homology (MATH) domain.Over the past few decades,significant progress has been made toward understanding the diverse roles of TRAF proteins in mammals and plants.Compared to other eukaryotic species,the Ara-bidopsis thaliana and rice (Oryza sativa) ge-nomes encode many more TRAF/MATH domain-containing proteins;these plant proteins cluster into five classes:TRAF/MATH-only,MATH-BPM,MATH-UBP (ubiquitin protease),Seven in ab-sentia (SINA),and MATH-Filament and MATH-PEARLI-4 proteins,suggesting parallel evolution of TRAF proteins in plants.Increasing evidence now indicates that plant TRAF proteins form central signaling networks essential for multiple biological processes,such as vegetative and reproductive development,autophagosome formation,plant immunity,symbiosis,phyto-hormone signaling,and abiotic stress responses.Here,we summarize recent ad-vances and highlight future prospects for un-derstanding on the molecular mechanisms by which TRAF proteins act in plant development and stress responses.
文献关键词:
作者姓名:
Hua Qi;Fan-Nv Xia;Shi Xiao;Juan Li
作者机构:
State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources,College of Plant Protection,South China Agricultural University,Guangzhou 510642,China;Guangdong Laboratory for Lingnan Modern Agriculture,Guangzhou 510642,China;State Key Laboratory of Biocontrol,Guangdong Provincial Key Laboratory of Plant Resources,School of Life Sciences,Sun Yat-sen University,Guangzhou 510275,China;College of Agronomy,Hunan Agricultural University,Changsha 410128,China
引用格式:
[1]Hua Qi;Fan-Nv Xia;Shi Xiao;Juan Li-.TRAF proteins as key regulators of plant development and stress responses)[J].植物学报(英文版),2022(02):431-448
A类:
meprin,MATH,bidopsis,UBP,sentia,SINA,Filament,PEARLI
B类:
TRAF,proteins,key,regulators,development,stress,responses,Tumor,necrosis,receptor,associated,conserved,higher,eukaryotes,play,roles,transducing,cellular,signals,across,different,organelles,They,characterized,by,their,terminal,region,domain,containing,seven,eight,anti,parallel,sheets,also,known,homology,Over,past,few,decades,significant,progress,has,been,made,toward,understanding,diverse,mammals,plants,Compared,other,eukaryotic,species,Ara,thaliana,rice,Oryza,sativa,nomes,encode,many,more,these,cluster,into,five,classes,only,BPM,ubiquitin,protease,Seven,suggesting,evolution,Increasing,evidence,indicates,that,central,signaling,networks,essential,multiple,biological,processes,such,vegetative,reproductive,autophagosome,formation,immunity,symbiosis,phyto,hormone,abiotic,Here,we,summarize,recent,vances,highlight,future,prospects,molecular,mechanisms,which
AB值:
0.537827
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