Sandbox Reserved 711: Difference between revisions
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Polygalacturonase belongs to the Glycoside hydrolysases 28 (GH28) according to the sequence-based classification of glycoside hydrolysases. The enzyme of the GH28 family achieves the hydrolysis with an inverting molecular mechanism. | Polygalacturonase belongs to the Glycoside hydrolysases 28 (GH28) according to the sequence-based classification of glycoside hydrolysases. The enzyme of the GH28 family achieves the hydrolysis with an inverting molecular mechanism. | ||
== The catalysed reaction == | == The catalysed reaction == | ||
The endopolygalacturonase II is an endo-acting enzyme that hydrolyses alpha(1,4)-glycosidic bonds between the D-galacturonic acid monomeres of pectin chains. One of its particularities is the inversion of configuration that occurs during the reaction. Its functionning is optimal at a pH of 4.2 and with a non-methylated substrate. | The endopolygalacturonase II is an endo-acting enzyme that hydrolyses alpha(1,4)-glycosidic bonds between the D-galacturonic acid monomeres of pectin chains. One of its particularities is the inversion of configuration that occurs during the reaction. Its functionning is optimal at a pH of 4.2 and with a non-methylated substrate. | ||
[[Image:mechanisme.png |center]] | |||
'''ICI''' | '''ICI''' | ||
The putative mechanism is the following: | The putative mechanism is the following: | ||
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The endopolygalacturonase II from Aspergillus niger has a beta-helix structure: the chain folds into 10 turns, shaping the faces of a right-handed helix consisting in 4 parallel beta-sheets - PB1, PB2a, PB2b and PB3 - separated by loops. The helix is closed at its N-terminal end by a small alpha-helix. | The endopolygalacturonase II from Aspergillus niger has a beta-helix structure: the chain folds into 10 turns, shaping the faces of a right-handed helix consisting in 4 parallel beta-sheets - PB1, PB2a, PB2b and PB3 - separated by loops. The helix is closed at its N-terminal end by a small alpha-helix. | ||
4 disulfide bridges, conserved in all endopolygalacturonases of ''A. | 4 disulfide bridges, conserved in all endopolygalacturonases of ''A. Niger'', hold together different parts of the chain, and particularily one of these attaches the N-terminal helix to the PB2b sheet. | ||
The loops separating PB1 and PB2a are longer on the C-terminal end, and those between PB3 and PB1 on the N-terminal end, what forms a cleft between two extensions outside of the the beta-helix. Its shape, open at both ends of the protein, allows the fixation of a linear glucidic chain, and is suited to the endohydrolytic mode of action. This cleft is a higly conserved region. | The loops separating PB1 and PB2a are longer on the C-terminal end, and those between PB3 and PB1 on the N-terminal end, what forms a cleft between two extensions outside of the the beta-helix. Its shape, open at both ends of the protein, allows the fixation of a linear glucidic chain, and is suited to the endohydrolytic mode of action. This cleft is a higly conserved region. | ||