Biomimetic oxidative copolymerization of hydroxystilbenes and monolignols

被引:6
作者
Kim, Hoon [1 ]
Rencoret, Jorge [2 ]
Elder, Thomas J. [3 ]
del Rio, Jose C. [2 ]
Ralph, John [1 ,4 ]
机构
[1] Univ Wisconsin Madison, Wisconsin Energy Inst, Dept Energy Great Lakes Bioenergy Res Ctr, Madison, WI 53726 USA
[2] Inst Recursos Nat & Agrobiol Sevilla IRNAS, CSIC, Ave Reina Mercedes,10, Seville 41012, Spain
[3] Forest Serv, Southern Res Stn Devall Dr Auburn 521, USDA, Southern Res Stn 521 Devall Dr, Auburn, AL 36849 USA
[4] Univ Wisconsin Madison, Dept Biochem, Madison, WI 53706 USA
基金
美国国家科学基金会;
关键词
RADICAL COUPLING REACTIONS; LIGNIN BIOSYNTHESIS; 5-HYDROXYCONIFERYL ALCOHOL; EPSILON-VINIFERIN; ETHER CLEAVAGE; DFRC METHOD; RESVERATROL; STILBENE; PICEATANNOL; CHEMISTRY;
D O I
10.1126/sciadv.ade5519
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Hydroxystilbenes are a class of polyphenolic compounds that behave as lignin monomers participating in radical coupling reactions during the lignification. Here, we report the synthesis and characterization of various artificial copolymers of monolignols and hydroxystilbenes, as well as low-molecular-mass compounds, to obtain the mechanistic insights into their incorporation into the lignin polymer. Integrating the hydroxystil-benes, resveratrol and piceatannol, into monolignol polymerization in vitro, using horseradish peroxidase to generate phenolic radicals, produced synthetic lignins [dehydrogenation polymers (DHPs)]. Copolymerization of hydroxystilbenes with monolignols, especially sinapyl alcohol, by in vitro peroxidases notably improved the reactivity of monolignols and resulted in substantial yields of synthetic lignin polymers. The resulting DHPs were analyzed using two-dimensional NMR and 19 synthesized model compounds to confirm the presence of hydrox-ystilbene structures in the lignin polymer. The cross-coupled DHPs confirmed both resveratrol and piceatannol as authentic monomers participating in the oxidative radical coupling reactions during polymerization.
引用
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页数:18
相关论文
共 92 条
[1]   Biological Activities of Stilbenoids [J].
Akinwumi, Bolanle C. ;
Bordun, Kimberly-Ann M. ;
Anderson, Hope D. .
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2018, 19 (03)
[2]   ALCL3-N,N-DIMETHYLANILINE - A NOVEL BENZYL AND ALLYL ETHER CLEAVAGE REAGENT [J].
AKIYAMA, T ;
HIROFUJI, H ;
OZAKI, S .
BULLETIN OF THE CHEMICAL SOCIETY OF JAPAN, 1992, 65 (07) :1932-1938
[3]   Incorporation of catechyl monomers into lignins: lignification from the non-phenolic end via Diels-Alder cycloaddition? [J].
Ando, Daisuke ;
Lu, Fachuang ;
Kim, Hoon ;
Eugene, Alexis ;
Tobimatsu, Yuki ;
Vanholme, Ruben ;
Elder, Thomas J. ;
Boerjan, Wout ;
Ralph, John .
GREEN CHEMISTRY, 2021, 23 (22) :8995-9013
[4]   STILBENOIDS FROM CASSIA-GARRETTIANA [J].
BABA, K ;
KIDO, T ;
TANIGUCHI, M ;
KOZAWA, M .
PHYTOCHEMISTRY, 1994, 36 (06) :1509-1513
[5]  
Begum SA, 2010, PROG CHEM ORG NAT PR, V93, P1, DOI 10.1007/978-3-7091-0140-7_1
[6]   Kinetic simulation of the thermal degradation of phenethyl phenyl ether, a model compound for the β-O-4 linkage in lignin [J].
Beste, Ariana ;
Buchanan, A. C., III .
CHEMICAL PHYSICS LETTERS, 2012, 550 :19-24
[7]   Lignin biosynthesis [J].
Boerjan, W ;
Ralph, J ;
Baucher, M .
ANNUAL REVIEW OF PLANT BIOLOGY, 2003, 54 :519-546
[8]   Variation in lignin content and composition - Mechanism of control and implications for the genetic improvement of plants [J].
Campbell, MM ;
Sederoff, RR .
PLANT PHYSIOLOGY, 1996, 110 (01) :3-13
[9]   Hydroxystilbenes Are Monomers in Palm Fruit Endocarp Lignins [J].
Carlos del Rio, Jose ;
Rencoret, Jorge ;
Gutierrez, Ana ;
Kim, Hoon ;
Ralph, John .
PLANT PHYSIOLOGY, 2017, 174 (04) :2072-2082
[10]   "Non-Taxifolin" Derived Flavonolignans: Phytochemistry and Biology [J].
Chambers, Christopher S. ;
Valentova, Katerina ;
Kren, Vladimir .
CURRENT PHARMACEUTICAL DESIGN, 2015, 21 (38) :5489-5500