THE ACTION OF ENDO-β-1,3-GLUCANASES ON BARLEY AND MALT β-GLUCANS
Действие эндо-β-1,3-глюканаз на β-глюканы ячменя и солода
1974-05-06
SCID: 54.1/77s9uzfp
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agarose gel permeation chromatographybarley β-glucansendo-β-1,3-glucanasemalt β-glucansβ-1,3/β-1,4 linkage arrangement
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Abstract (AI)
The β-glucan extracted from ungerminated barley with water at 40 °C has a much lower specific viscosity than the corresponding material isolated from a wort prepared at 65 °C from a two-day germinated barley malt. Both glucans are similar in that they are polymers of β-D-glucose, with approximately 74% of the linkages in the β-1,4 configuration and 26% in the β-1,3 configuration. However, the two glucans are not hydrolysed to the same extent either by a partially purified bacterial endo-β-1,3-glucanase or by a homogeneous endo-β-1,3-glucanase from malted barley. The malt glucan is readily hydrolysed, causing a rapid decrease in specific viscosity but with no measurable increase in reducing power, whereas barley glucan undergoes only limited hydrolysis under similar conditions. Thus, different β-glucan preparations from barley or malt may be identical in the proportion of β-1,3 to β-1,4-linkages but the overall arrangement of linkages, and hence susceptibility to enzyme attack, differs according to the source and the method of extraction of the glucan. The molecular weights of both β-glucan preparations and the products of their enzyme hydrolysis have been determined by agarose gel permeation chromatography. A simple model which illustrates the underlying structural relationships of the β-glucans from barley and malt is suggested.
Key Findings
1
Barley and malt β-glucans share similar composition, with approximately 74% β-1,4 and 26% β-1,3 linkages, but differ in linkage arrangement.
2
Barley β-glucan undergoes only limited hydrolysis under comparable enzymatic conditions, demonstrating lower susceptibility despite similar linkage proportions.
3
Differences in β-glucan structure depend on source and extraction method; molecular-weight changes after hydrolysis were characterized by agarose gel permeation chromatography and interpreted using a structural model.
4
Malt β-glucan is readily hydrolysed by bacterial and malt endo-β-1,3-glucanases, rapidly reducing viscosity without measurable increase in reducing power.
5
Water-extracted glucan from ungerminated barley has substantially lower specific viscosity than glucan isolated from wort made from two-day germinated malt.
Research Object
β-glucan preparations from ungerminated barley and two-day germinated barley malt
Research Subject
The structural arrangement, molecular-weight characteristics, and susceptibility of barley and malt β-glucans to hydrolysis by endo-β-1,3-glucanases
Publication Details
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1974-05-06
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