نتایج جستجو برای: 4CL (4Coumarate CoA ligase)

تعداد نتایج: 49256  

Journal: :journal of medicinal plants and by-products 0

recent data showed that phenylpropanoid compound, methylchavicol is essential component of iranian cultivars of basil. studying their occurrence during development of plant may help to elucidate the role of phenylpropanoids in plant cell physiology. we followed the phenylpropanoids concentration and the expression of genes related to their biosynthesis during growth and development of two culti...

Journal: :Biochemical and biophysical research communications 2013
Haiyan Sun Ying Li Shengqiu Feng Weihua Zou Kai Guo Chunfen Fan Shengli Si Liangcai Peng

4-Coumarate:coenzyme A ligase (4CL) catalyzes the conversion of hydroxycinnamates into corresponding CoA esters for biosynthesis of flavonoids and lignin. In this study, five members of the 4CL gene family from rice were cloned and analyzed. Recombinant 4CL data revealed that 4-coumaric acid and ferulic acid were the two main substrates of 4CL (Os4CL1/3/4/5) for monolignol biosynthesis in rice....

Recent data showed that phenylpropanoid compound, methylchavicol is essential component of Iranian cultivars of basil. Studying their occurrence during development of plant may help to elucidate the role of phenylpropanoids in plant cell physiology. We followed the phenylpropanoids concentration and the expression of genes related to their biosynthesis during growth and development of two culti...

Journal: :Molecules 2018
Xin-Yan Liu Ping-Ping Wang Yi-Feng Wu Ai-Xia Cheng Hong-Xiang Lou

Selaginella is an extant lycopodiophyte genus, which is representative of an ancient lineage of tracheophytes. The important evolutionary status makes it a valuable resource for the study of metabolic evolution in vascular plants. 4-coumarate: CoA ligase (4CL) is the pivotal enzyme that controls the flow of carbon through the phenylpropanoid metabolic pathway into the specific lignin, flavonoid...

Journal: :The Plant cell 2012
Antje Klempien Yasuhisa Kaminaga Anthony Qualley Dinesh A Nagegowda Joshua R Widhalm Irina Orlova Ajit Kumar Shasany Goro Taguchi Christine M Kish Bruce R Cooper John C D'Auria David Rhodes Eran Pichersky Natalia Dudareva

Biosynthesis of benzoic acid from Phe requires shortening of the side chain by two carbons, which can occur via the β-oxidative or nonoxidative pathways. The first step in the β-oxidative pathway is cinnamoyl-CoA formation, likely catalyzed by a member of the 4-coumarate:CoA ligase (4CL) family that converts a range of trans-cinnamic acid derivatives into the corresponding CoA thioesters. Using...

Journal: :Plant physiology 2013
Hsi-Chuan Chen Jina Song Cranos M Williams Christopher M Shuford Jie Liu Jack P Wang Quanzi Li Rui Shi Emine Gokce Joel Ducoste David C Muddiman Ronald R Sederoff Vincent L Chiang

4-Coumaric acid:coenzyme A ligase (4CL) is involved in monolignol biosynthesis for lignification in plant cell walls. It ligates coenzyme A (CoA) with hydroxycinnamic acids, such as 4-coumaric and caffeic acids, into hydroxycinnamoyl-CoA thioesters. The ligation ensures the activated state of the acid for reduction into monolignols. In Populus spp., it has long been thought that one monolignol-...

Journal: :Journal of experimental botany 2008
Lucie Kienow Katja Schneider Michael Bartsch Hans-Peter Stuible Hua Weng Otto Miersch Claus Wasternack Erich Kombrink

Arabidopsis thaliana contains a large number of genes encoding carboxylic acid-activating enzymes, including long-chain fatty acyl-CoA synthetase (LACS), 4-coumarate:CoA ligases (4CL), and proteins closely related to 4CLs with unknown activities. The function of these 4CL-like proteins was systematically explored by applying an extensive substrate screen, and it was uncovered that activation of...

Journal: :Molecular bioSystems 2017
Huili Guo Yadong Yang Feiyan Xue Hong Zhang Tiran Huang Wenbin Liu Huan Liu Fenqiang Zhang Mingfeng Yang Chunmei Liu Heshu Lu Yansheng Zhang Lanqing Ma

In order to elucidate the effect of flexible linker length on the catalytic efficiency of fusion proteins, two short flexible peptide linkers of various lengths were fused between Arabidopsis thaliana 4-coumaroyl-CoA ligase (4CL) and Polygonum cuspidatum stilbene synthase (STS) to generate fusion proteins 4CL-(GSG)n-STS (n ≤ 5) and 4CL-(GGGGS)n-STS (n ≤ 4). The fusion proteins were expressed in...

Journal: :Plant physiology 2015
Yi Li Jeong Im Kim Len Pysh Clint Chapple

The biosynthesis of lignin, flavonoids, and hydroxycinnamoyl esters share the first three enzymatic steps of the phenylpropanoid pathway. The last shared step is catalyzed by 4-coumarate:CoA ligase (4CL), which generates p-coumaroyl CoA and caffeoyl CoA from their respective acids. Four isoforms of 4CL have been identified in Arabidopsis (Arabidopsis thaliana). Phylogenetic analysis reveals tha...

Journal: :The New phytologist 2008
Clarice de Azevedo Souza Brad Barbazuk Steven G Ralph Joerg Bohlmann Bjoern Hamberger Carl J Douglas

The plant enzyme 4-coumarate:coenzyme A ligase (4CL) is part of a family of adenylate-forming enzymes present in all organisms. Analysis of genome sequences shows the presence of '4CL-like' enzymes in plants and other organisms, but their evolutionary relationships and functions remain largely unknown. 4CL and 4CL-like genes were identified by BLAST searches in Arabidopsis, Populus, rice, Physc...

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