| Literature DB >> 26027730 |
Takao Kuge1, Hiroki Nagoya2, Theodora Tryfona3, Tsunemi Kurokawa2, Yoshihisa Yoshimi2, Naoshi Dohmae2,4, Kazufumi Tsubaki1, Paul Dupree3, Yoichi Tsumuraya2, Toshihisa Kotake2,5.
Abstract
β-1,3:1,4-Glucan is a major cell wall component accumulating in endosperm and young tissues in grasses. The mixed linkage glucan is a linear polysaccharide mainly consisting of cellotriosyl and cellotetraosyl units linked through single β-1,3-glucosidic linkages, but it also contains minor structures such as cellobiosyl units. In this study, we examined the action of an endo-β-1,3(4)-glucanase from Trichoderma sp. on a minor structure in barley β-1,3:1,4-glucan. To find the minor structure on which the endo-β-1,3(4)-glucanase acts, we prepared oligosaccharides from barley β-1,3:1,4-glucan by endo-β-1,4-glucanase digestion followed by purification by gel permeation and paper chromatography. The endo-β-1,3(4)-glucanase appeared to hydrolyze an oligosaccharide with degree of polymerization 5, designated C5-b. Based on matrix-assisted laser desorption/ionization (MALDI) time-of-flight (ToF)/ToF-mass spectrometry (MS)/MS analysis, C5-b was identified as β-Glc-1,3-β-Glc-1,4-β-Glc-1,3-β-Glc-1,4-Glc including a cellobiosyl unit. The results indicate that a type of endo-β-1,3(4)-glucanase acts on the cellobiosyl units of barley β-1,3:1,4-glucan in an endo-manner.Entities:
Keywords: MALDI-ToF/ToF-/MS/MS; barley; cellobiosyl unit; endo-β-1,3(4)-glucanase: β-1,3:1,4-glucan
Mesh:
Substances:
Year: 2015 PMID: 26027730 PMCID: PMC4673573 DOI: 10.1080/09168451.2015.1046365
Source DB: PubMed Journal: Biosci Biotechnol Biochem ISSN: 0916-8451 Impact factor: 2.043
Substrate specificity of the enzymes.
| Substrate | rGI | rGII | |
|---|---|---|---|
| Laminarin (β-1,3:1,6-glucan) | 100 | 100 | 100 |
| β-1,3:1,4-Glucan (high viscosity) | <0.1 | <0.1 | 41 |
| β-1,3:1,4-Glucan (medium viscosity) | <0.1 | <0.1 | 9 |
| β-1,3:1,4-Glucan (low viscosity) | <0.1 | <0.1 | 9 |
| CM-cellulose (β-1,4-glucan) | <0.1 | <0.1 | <0.1 |
The reducing sugars liberated from polysaccharide substrate by the enzyme were measured.
Activity is expressed in % of that toward laminarin.
Fig. 1. Breakdown of β-1,3:1,4-glucan by the Trichoderma endo-β-1,3(4)-glucanase.
Fig. 2. Separation of oligosaccharides released from β-1,3:1,4-glucan by endo-β-1,4-glucanase.
Fig. 3. Action of the Trichoderma enzyme, barley rGI and rGII on oligosaccharides prepared from β-1,3:1,4-glucan.
Glucosidic linkage analysis of oligosaccharides derived from β-glucan, E70-S.
| t-Glc | 3-Glc | 4-Glc | 4Glcol | |
|---|---|---|---|---|
| C3 | 1.00 | 0.96 | – | 1.46 |
| C4 | 1.00 | 0.93 | 0.90 | 1.19 |
| C5-b | 1.00 | 1.72 | 1.14 | 0.53 |
Molar ratio is expressed based on either nonreducing (t-Glc) taken as 1.0.
Samples were methylated after reduction of their reducing ends with NaBH4.
Not detected.
Fig. 4. Structural characterization of C5-b oligosaccharide by MALDI-CID. Cellopentaose (A), laminaripentaise (B), and C5-b oligosaccharide (C) were per-methylated and analyzed by MALDI-CID.
Fig. 5. Analysis of products released from C5-b oligosaccharides by the Trichoderma enzyme on PACE.