Sandbox Reserved 1094: Difference between revisions

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'''Tertiary structure'''
'''Tertiary structure'''
Each <scene name='82/829347/Monomerg6pd/1'>monomer</scene> is composed of 2 domains, <scene name='82/829347/Homodimer_g6pd/5'>1 red and 1 green</scene>.
Each <scene name='82/829347/Monomerg6pd/1'>monomer</scene> is composed of 2 domains, <scene name='82/829347/Homodimer_g6pd/5'>1 red and 1 green</scene>.
Depending on several conditions, it can dimerize to form tetramers. Each monomer is composed of a small domain localized in the amino terminal part which constitute the coenzyme binding domain and a larger domain in the carboxy terminal part which constitute the substrate binding domain. the complex has a substrate binding site that binds to G6P, and a catalytic coenzyme binding site that binds to NADP+ using the Rossman fold.<ref name="struc">PMID: 7881907</ref>  
Depending on several conditions, it can dimerize to form tetramers. Each monomer is composed of a small domain localized in the amino terminal part which constitute the coenzyme binding domain and a larger domain in the carboxy terminal part which constitute the substrate binding domain. the complex has a substrate binding site that binds to G6P, and a catalytic coenzyme binding site that binds to NADP+ using the Rossman fold.<ref name="struc">PMID: 7881907</ref>  


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It is defined by a typical [https://scop.berkeley.edu/sunid=30074 β-α-β dinucleotide-binding fold] corresponding to a [https://en.wikipedia.org/wiki/Rossmann_fold Rossman fold].
It is defined by a typical [https://scop.berkeley.edu/sunid=30074 β-α-β dinucleotide-binding fold] corresponding to a [https://en.wikipedia.org/wiki/Rossmann_fold Rossman fold].


*''Substrate binding domain''
The substrate binding domain binds to the 6-phosphate of '''G6P'''. It is defined by a β+α particular fold which has created his own fold family the [https://scop.berkeley.edu/sunid=39989 G6PD-like]. It is composed of a large essentially antiparallel curved nine-stranded β-sheet with 11 helices.
'''Quaternary structure'''
''Dimer''
The dimer is very extend compared to the monomer with a size of 112Å.
The enzyme is found into a dimeric form in vivo. The two subunits interface is made by the contact between the two antiparallels β-sheets of the substrate binding domains. Their interaction is crucial and form a β-half-barrel on one side of the protein which is closed on the other side by helices of each monomer. The majority of dimer contacts are hydrophobic but there are three salt bridges, especially a conserved one between Glu183 and Lys386, and two main chain hydrogen bonds which participates to the cohesion of the structure.
The active site of the enzyme is contained in each monomer but the dimeric form is necessary to the biological activity indeed it confers the stability in aqueous medium.


</StructureSection>
</StructureSection>

Revision as of 11:10, 16 January 2020

This Sandbox is Reserved from 25/11/2019, through 30/9/2020 for use in the course "Structural Biology" taught by Bruno Kieffer at the University of Strasbourg, ESBS. This reservation includes Sandbox Reserved 1091 through Sandbox Reserved 1115.
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Glucose-6-Phosphate Dehydrogenase from Leuconostoc mesenteroides

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References


Proteopedia page contributors and editors

DONATI Quentin, LOGEREAU Lucie, PROST Loana