Journal:Acta Cryst D:S2059798319007113
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<StructureSection load='' size='450' side='right' scene='81/817969/Cv/1' caption=''> | <StructureSection load='' size='450' side='right' scene='81/817969/Cv/1' caption=''> | ||
===Crystal Structure Determination of ''Pseudomonas stutzeri'' A1501 endoglucanase Cel5A=== | ===Crystal Structure Determination of ''Pseudomonas stutzeri'' A1501 endoglucanase Cel5A=== | ||
- | <big>Raphael Dutoit, Maud Delsaute, Laetitia Collet, Corinne Vander Wauven, Dany Van Elder, Renaud Berlemont, Aurore Richel, Moreno Galleni and Cedric Bauvois</big> <ref> | + | <big>Raphael Dutoit, Maud Delsaute, Laetitia Collet, Corinne Vander Wauven, Dany Van Elder, Renaud Berlemont, Aurore Richel, Moreno Galleni and Cedric Bauvois</big> <ref>pmid 31205022</ref> |
<hr/> | <hr/> | ||
<b>Molecular Tour</b><br> | <b>Molecular Tour</b><br> | ||
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<scene name='81/817969/Cv/7'>Close up view of the acceptor binding site of Ps_Cel5A (in gold) and RBcel1 (in blue)</scene>. A non-conserved arginine residue (<scene name='81/817969/Cv/8'>Arg178 and Arg176 in Ps_Cel5A and RBcel1</scene>, respectively) is found in the acceptor binding site. <scene name='81/817969/Cv/9'>In the Ps_Cel5A structure, Arg178 interacts with the cellobiose</scene>. Such an interaction could increase the acceptor binding affinity and, hence, favor transglycosylation. This structural feature is not observed in other GH5_5 members. Remarkably, the presence of arginine residue in the acceptor binding site does not occur in a conserved position in Ps_Cel5A and Rbcel1. Indeed, His184 is found in Ps_Cel5A at the equivalent position to Arg176. Likewise, Ser170 is found in RBcel1 at the equivalent position to Arg178, indicating a possible convergent evolution. It is worth noting that a similar adaptation of the acceptor binding site has been reported for several b-mannanases of the GH5_7 subfamily. In these enzymes, an arginine residue plays a key role in the acceptor sugar binding, driving transglycosylation. | <scene name='81/817969/Cv/7'>Close up view of the acceptor binding site of Ps_Cel5A (in gold) and RBcel1 (in blue)</scene>. A non-conserved arginine residue (<scene name='81/817969/Cv/8'>Arg178 and Arg176 in Ps_Cel5A and RBcel1</scene>, respectively) is found in the acceptor binding site. <scene name='81/817969/Cv/9'>In the Ps_Cel5A structure, Arg178 interacts with the cellobiose</scene>. Such an interaction could increase the acceptor binding affinity and, hence, favor transglycosylation. This structural feature is not observed in other GH5_5 members. Remarkably, the presence of arginine residue in the acceptor binding site does not occur in a conserved position in Ps_Cel5A and Rbcel1. Indeed, His184 is found in Ps_Cel5A at the equivalent position to Arg176. Likewise, Ser170 is found in RBcel1 at the equivalent position to Arg178, indicating a possible convergent evolution. It is worth noting that a similar adaptation of the acceptor binding site has been reported for several b-mannanases of the GH5_7 subfamily. In these enzymes, an arginine residue plays a key role in the acceptor sugar binding, driving transglycosylation. | ||
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+ | '''PDB reference:''' Crystal Structure of Pseudomonas stutzeri endoglucanase Cel5A in complex with cellobiose [[6r2j]]. | ||
<b>References</b><br> | <b>References</b><br> | ||
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<references/> | <references/> | ||
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</StructureSection> | </StructureSection> | ||
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