期刊文献+

Feruloylated Arabinoxylans Are Oxidatively Cross- Linked by Extracellular Maize Peroxidase but Not by Horseradish Peroxidase 被引量:6

Feruloylated Arabinoxylans Are Oxidatively Cross- Linked by Extracellular Maize Peroxidase but Not by Horseradish Peroxidase
原文传递
导出
摘要 Covalent cross-linking of soluble extracellular arabinoxylans in living maize cultures, which models the cross- linking of wall-bound arabinoxylans, is due to oxidation of feruloyl esters to oligoferuloyl esters and ethers. The oxidizing system responsible could be H2O2/peroxidase, O2/laccase, or reactive oxygen species acting non-enzymically, To distinguish these possibilities, we studied arabinoxylan cross-linking in vivo and in vitro. In living cultures, exogenous, soluble, extracellular, feruloylated [pentosyl-3H]arabinoxylans underwent cross-linking, beginning abruptly 8 d after sub-culture. Crosslinking was suppressed by iodide, an H2O2 scavenger, indicating dependence on endogenous H2O2. However, exogenous H2O2 did not cause precocious cross-linking, despite the constant presence of endogenous peroxidases, suggesting that younger cultures contained natural cross-linking inhibitors. Dialysed culture-filtrates cross-linked [^3H]arabinoxylans in vitro only if H2O2 was also added, indicating a peroxidase requirement. This cross-linking was highly ionic-strength-dependent. The peroxidases responsible were heat-labile, although relatively heat-stable peroxidases (assayed on o-dianisidine) were also present. Surprisingly, added horseradish peroxidase, even after heat-denaturation, blocked the arabinoxylancross-linking action of maize peroxidases, suggesting that the horseradish protein was a competing substrate for [^3H]arabinoxylan coupling. In conclusion, we show for the first time that cross-linking of extracellular arabinoxylan in living maize cultures is an action of apoplastic peroxidases, some of whose unusual properties we report. Covalent cross-linking of soluble extracellular arabinoxylans in living maize cultures, which models the cross- linking of wall-bound arabinoxylans, is due to oxidation of feruloyl esters to oligoferuloyl esters and ethers. The oxidizing system responsible could be H2O2/peroxidase, O2/laccase, or reactive oxygen species acting non-enzymically, To distinguish these possibilities, we studied arabinoxylan cross-linking in vivo and in vitro. In living cultures, exogenous, soluble, extracellular, feruloylated [pentosyl-3H]arabinoxylans underwent cross-linking, beginning abruptly 8 d after sub-culture. Crosslinking was suppressed by iodide, an H2O2 scavenger, indicating dependence on endogenous H2O2. However, exogenous H2O2 did not cause precocious cross-linking, despite the constant presence of endogenous peroxidases, suggesting that younger cultures contained natural cross-linking inhibitors. Dialysed culture-filtrates cross-linked [^3H]arabinoxylans in vitro only if H2O2 was also added, indicating a peroxidase requirement. This cross-linking was highly ionic-strength-dependent. The peroxidases responsible were heat-labile, although relatively heat-stable peroxidases (assayed on o-dianisidine) were also present. Surprisingly, added horseradish peroxidase, even after heat-denaturation, blocked the arabinoxylancross-linking action of maize peroxidases, suggesting that the horseradish protein was a competing substrate for [^3H]arabinoxylan coupling. In conclusion, we show for the first time that cross-linking of extracellular arabinoxylan in living maize cultures is an action of apoplastic peroxidases, some of whose unusual properties we report.
出处 《Molecular Plant》 SCIE CAS CSCD 2009年第5期883-892,共10页 分子植物(英文版)
关键词 Cell wall CROSS-LINKS phenolics FERULATE PEROXIDASE soluble extracellular polysaccharides Zea mays L. Cell wall cross-links phenolics ferulate peroxidase soluble extracellular polysaccharides Zea mays L.
  • 相关文献

参考文献49

  • 1Allerdings, E., Ralph, J., Schatz, RE, Gniechwitz, D., Steinhart, H., and Bunzel, M. (2005). Isolation and structural identification of diarabinosyl 8-O-4-dehydrodiferulate from maize bran inso - uble fibre. Phytochemistry. 66, 113-124. 被引量:1
  • 2Anterola, A.M., Jeon, J.H., Davin, L.B., and Lewis, N.G. (2002). Transcriptional control of monolignol biosynthesis in Pinus taeda- factors affecting monolignoJ ratios and carbon allocation in phenylpropanoid metabolism. J. Biol. Chem. 277, 18272-18280. 被引量:1
  • 3Brett, C.T., Wende, G., Smith, A.C., and Waldron, K.W. (1999). Biosynthesis of cell-wall ferulate and diferulates. J. Sci. Food Agric. 79, 421-424. 被引量:1
  • 4Bunzel, M., Funk, C., and Steinhart, H. (2004). Semipreparative isolation of dehydrodiferulic and dehydrotriferulic acids as standard substances from maize bran. J. Sep. Sci. 27, 1080-1086. 被引量:1
  • 5Bunzel, M., Ralph, J., Braining, R, and Steinhart, H. (2006). Structural identification of dehydrotriferulic and dehydrotetraferulic acids isolated from insoluble maize bran fiber. J. Agric. Food Chem. 54, 6408-6418. 被引量:1
  • 6Bunzel, M., Ralph, J., Funk, C., and Steinhart, H. (2005). Structural elucidation of new ferulic acid-containing phenolic dimers and trimers isolated from maize bran. Tetrahedron Lett. 46, 5845-5850. 被引量:1
  • 7Burr, SJ., and Fry, S.C. (2009). Extracellular cross-linking of maize arabinoxylans by oxidation of feruloyl esters to form oligoferuloyl esters and ether-like bonds. Plant J. 58, 554-567. 被引量:1
  • 8Encina, A., and Fry, S.C. (2005). Oxidative coupling of a feruloylarabinoxylan trisaccharide (FAXX) in the walls of living maize cells requires endogenous hydrogen peroxide and is controlled by a low-Mr apoplastic inhibitor. Planta. 223, 77-89. 被引量:1
  • 9Faure, R., et al. (2009). An unambiguous nomenclature system for oligosaccharide motifs derived from heteroxylans found in plant cell walls. Aust. J. Chem. 62, 533-537. 被引量:1
  • 10Figueroa.Espinoza, M.C., Morel, M.H., Surget, A., and Rouau, X. (1999), Oxidative cross-linking of wheat arabinoxylans by manganese peroxidase: comparison with laccase and horseradish peroxidase: effect of cysteine and tyrosine on gelation. J. Sci. Food Aqric. 79, 460-463. 被引量:1

同被引文献32

引证文献6

二级引证文献194

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部