THE DEGRADATION OF β-GLUCAN DURING MALTING AND MASHING: THE ROLE OF β-GLUCANASE

Деградация β-глюкана при солодоращении и затирании: роль β-глюканазы
Charles W. Bamforth, Hilary Martin
1983-07-08

barley maltingmashingmixed-linkage β-glucansβ-glucan degradationβ-glucanase
Significant β-glucanolysis takes place during mashing and is catalysed by a β-glucanase which is specific to mixed-linkage β-glucans. The enzyme develops during the germination of barley, but is rapidly and extensively destroyed in kilning. Partially-purified preparations of β-glucanase are protected from denaturation by heat if their solutions are adjusted to pH 4 or if bovine serum albumin is added. However the most effective stabiliser of the enzyme is reduced glutathione. Oligosaccharides containing three and four glucosyl units are produced by the action of β-glucanase and they are further converted during malting and mashing by a different enzyme(s) to disaccharides and glucose.
1
Significant β-glucan degradation occurs during mashing, catalyzed by an enzyme specific to mixed-linkage β-glucans.
2
β-glucanase develops during barley germination but is rapidly and extensively destroyed during kilning.
3
β-glucanase heat denaturation is reduced at pH 4 or with bovine serum albumin, while reduced glutathione provides the most effective stabilization.
4
β-glucanase produces trisaccharides and tetrasaccharides, which other enzyme(s) subsequently convert into disaccharides and glucose during malting and mashing.

β-glucan degradation during barley malting and mashing

The role, development, thermal denaturation, stabilization, and enzymatic breakdown products of mixed-linkage β-glucanase

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Publication Date
1983-07-08
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Authors
Charles W. Bamforth
Hilary Martin
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