EC Number   |
Substrates   |
Products   |
Reversibility   |
|---|
  2.4.1.25 | (alpha-1,4 glucan)m + (alpha-1,4 glucan)n |
- |
(alpha-1,4 glucan)m-x + (alpha-1,4 glucan)n+x |
- |
r |
  2.4.1.25 | (alpha-1,4-D-glucan)m + (alpha-1,4-D-glucan)m |
- |
cyclic(alpha-1,4-glucan)x + (alpha-1,4-D-glucan)m-x |
- |
r |
  2.4.1.25 | (alpha-1,4-D-glucan)m + (alpha-1,4-D-glucan)n |
- |
(alpha-1,4-D-glucan)m-x + (alpha-1,4-D-glucan)n+x |
- |
r |
  2.4.1.25 | (alpha-1,4-D-glucan)m + H2O |
- |
(alpha-1,4-D-glucan)x + (alpha-1,4-D-glucan)m-x |
- |
r |
  2.4.1.25 | 1,4-alpha-D-glucan + 1,4-alpha-D-glucan |
- |
maltooligosaccharides |
- |
? |
  2.4.1.25 | 1,4-alpha-D-glucan + 1,4-alpha-D-glucan |
it is proposed that a soluble heteroglycan is the in vivo substrate for DPE2. An alternative route to metabolize the glucan residues in soluble heteroglycan exists in Escherichia coli |
maltooligosaccharides |
- |
? |
  2.4.1.25 | 1,4-alpha-D-glucan + 1,4-alpha-D-glucan |
it is proposed that a soluble heteroglycan is the in vivo substrate for DPE2. An alternative route to metabolize the glucan residues in soluble heteroglycane exists in Arabidopsis thaliana |
maltooligosaccharides |
- |
? |
  2.4.1.25 | 1,4-alpha-D-glucan + 1,4-alpha-D-glucan |
maltose and a highly branched, soluble heteroglycan are excellent substrates for DPE2 |
maltooligosaccharide |
- |
? |
  2.4.1.25 | 1,4-alpha-D-glucan + 1,4-alpha-D-glucan |
- |
maltooligosaccharide |
- |
? |
  2.4.1.25 | 1,4-alpha-D-glucan + glucose |
- |
maltooligosaccharides |
- |
? |