Novel motif is capable of determining CCR and CCR-like proteins based on the divergence of CCRs in plants

2019 ◽  
Vol 39 (12) ◽  
pp. 2019-2026
Author(s):  
Nan Chao ◽  
Wen-Ting Jiang ◽  
Xue-Chun Wang ◽  
Xiang-Ning Jiang ◽  
Ying Gai

Abstract Cinnamoyl-coenzyme A reductases (CCRs) have been reported as key enzymes involved in monolignol biosynthesis. In this study, a motif-aware workflow based on a new signature motif effectively distinguished CCRs from CCR-like proteins. The divergence of CCRs and CCR-like sequences in Populus tomentosa Carr, Panicum virgatum L, Oryza sativa L and Selaginella moellendorffii Hieron suggests that NWYCY is not efficient for CCR recognition. The novel motif H202(X)2K205 (CCR-SBM or CCR substrate binding motif) was introduced to distinguish between CCRs and CCR-like proteins. The site-directed mutant R205K in Os(I)CCR-like and H202 in PtoCCR7 resulted in the rescue and loss of activity, respectively, further validating the fact that CCR-SBM is critical for maintaining CCR activity. The molecular docking using feruloyl-cinnamoyl-coenzyme A (CoA) as the ligand and binary PhCCR-NADP structures as receptors indicated an interaction between H202 and K205 with CoA moiety. The genuine CCRs and CCR-like proteins from several angiosperms and gymnosperms were screened using a motif-aware workflow and were validated using a biochemical assay. Our results suggest that the motif-aware workflow is efficient and effective for the identification of CCRs and CCR-like proteins in land plants and can be used as a more accurate way of identifying genuine CCRs among land plants.

PeerJ ◽  
2021 ◽  
Vol 9 ◽  
pp. e10741
Author(s):  
Nan Chao ◽  
Qi Qi ◽  
Shuang Li ◽  
Brent Ruan ◽  
Xiangning Jiang ◽  
...  

Hydroxycinnamoyl-CoA: shikimate hydroxycinnamoyl transferase (HCT) divides the mass flux to H, G and S units in monolignol biosynthesis and affects lignin content. Ten HCT homologs were identified in the Populus trichocarpa (Torr. & Gray) genome. Both genome duplication and tandem duplication resulted in the expansion of HCT orthologs in Populus. Comprehensive analysis including motif analysis, phylogenetic analysis, expression profiles and co-expression analysis revealed the divergence and putative function of these candidate PoptrHCTs. PoptrHCT1 and 2 were identified as likely involved in lignin biosynthesis. PoptrHCT9 and 10- are likely to be involved in plant development and the response to cold stress. Similar functional divergence was also identified in Populus tomentosa Carr. Enzymatic assay of PtoHCT1 showed that PtoHCT1 was able to synthesize caffeoyl shikimate using caffeoyl-CoA and shikimic acid as substrates.


2007 ◽  
Vol 98 (16) ◽  
pp. 2985-2992 ◽  
Author(s):  
Gautam Sarath ◽  
Lisa M. Baird ◽  
Kenneth P. Vogel ◽  
Robert B. Mitchell

Author(s):  
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Jingyi Yuan ◽  
Jeffrey J. Morrell ◽  
Li Yan

2005 ◽  
Vol 110 (8) ◽  
pp. 1372-1383 ◽  
Author(s):  
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A H Paterson ◽  
J H Bouton

2012 ◽  
Vol 60 (3) ◽  
pp. 975-984 ◽  
Author(s):  
Patrick F. Dowd ◽  
Gautam Sarath ◽  
Robert B. Mitchell ◽  
Aaron J. Saathoff ◽  
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Ying Gai ◽  
...  

Plant Science ◽  
2019 ◽  
Vol 280 ◽  
pp. 66-76 ◽  
Author(s):  
Jinfang Wang ◽  
Lei Zhang ◽  
Xiaoyun Wang ◽  
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Xinpeng Lin ◽  
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2014 ◽  
Vol 7 (4) ◽  
pp. 1351-1357 ◽  
Author(s):  
Joshua M. Weaver ◽  
Laura Sofia Montes Sujo ◽  
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2018 ◽  
Vol 11 (3) ◽  
pp. 180002 ◽  
Author(s):  
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Joseph Evans ◽  
Aruna Nandety ◽  
Malay C. Saha ◽  
E. Charles Brummer ◽  
...  

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