Structural Similarities and Overlapping Activities among Dihydroflavonol 4-Reductase, Flavanone 4-Reductase, and Anthocyanidin Reductase Offer Metabolic Flexibility in the Flavonoid Pathway

被引:7
|
作者
Lewis, Jacob A. [1 ]
Zhang, Bixia [1 ]
Harza, Rishi [1 ]
Palmer, Nathan [2 ]
Sarath, Gautam [2 ]
Sattler, Scott E. [2 ]
Twigg, Paul [3 ]
Vermerris, Wilfred [4 ,5 ]
Kang, ChulHee [1 ]
机构
[1] Washington State Univ, Dept Chem, Pullman, WA 99164 USA
[2] ARS, USDA, Wheat Sorghum Forage Res Unit, Lincoln, NE 68583 USA
[3] Univ Nebraska Kearney, Biol Dept, Kearney, NE 68849 USA
[4] Univ Florida, Dept Microbiol & Cell Sci, Gainesville, FL 32610 USA
[5] Univ Florida, UF Genet Inst, Gainesville, FL 32610 USA
关键词
3-deoxyanthocyanidin; flavonoid; Panicum virgatum; sorghum; Sorghum bicolor; switchgrass; SUBSTRATE-SPECIFICITY; KEY ENZYME; SORGHUM; BIOSYNTHESIS; ACCUMULATION; PHYTOALEXINS; QUERCETIN; CLONING;
D O I
10.3390/ijms241813901
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Flavonoids are potent antioxidants that play a role in defense against pathogens, UV-radiation, and the detoxification of reactive oxygen species. Dihydroflavonol 4-reductase (DFR) and flavanone 4-reductase (FNR) reduce dihydroflavonols and flavanones, respectively, using NAD(P)H to produce flavan-(3)-4-(di)ols in flavonoid biosynthesis. Anthocyanidin reductase (ANR) reduces anthocyanidins to flavan-3-ols. In addition to their sequences, the 3D structures of recombinant DFR, FNR and ANR from sorghum and switchgrass showed a high level of similarity. The catalytic mechanism, substrate-specificity and key residues of three reductases were deduced from crystal structures, site-directed mutagenesis, molecular docking, kinetics, and thermodynamic ana-lyses. Although DFR displayed its highest activity against dihydroflavonols, it also showed activity against flavanones and anthocyanidins. It was inhibited by the flavonol quercetin and high concentrations of dihydroflavonols/flavonones. SbFNR1 and SbFNR2 did not show any activity against dihydroflavonols. However, SbFNR1 displayed activity against flavanones and ANR activity against two anthocyanidins, cyanidin and pelargonidin. Therefore, SbFNR1 and SbFNR2 could be specific ANR isozymes without delphinidin activity. Sorghum has high concentrations of 3-deoxyanthocyanidins in vivo, supporting the observed high activity of SbDFR against flavonols. Mining of expression data indicated substantial induction of these three reductase genes in both switchgrass and sorghum in response to biotic stress. Key signature sequences for proper DFR/ANR classification are proposed and could form the basis for future metabolic engineering of flavonoid metabolism.
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页数:30
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