Sandbox Reserved 1126

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* Tetramer formation
* Tetramer formation
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It involves the Bateman modules as well as the catalytic core of each dimer. Each <scene name='71/719867/Scene_3/1'>oligomerization loop</scene> (loop 513-519) of a monomer of one dimer interacts with the catalytic core of a monomer of the other dimer. Those loops interact within a crevace (shaped by α-helix 5-6-12-15-16 and β-strands 5-6) of the catalytic core. The tetramer is an inactive form of the enzyme.
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It involves the Bateman modules as well as the catalytic cores of each dimer. Each <scene name='71/719867/Scene_3/1'>oligomerization loop</scene> (loop 513-519) of a monomer of one dimer interacts with the catalytic core of a monomer of the other dimer. Those loops interact within a crevace (shaped by α-helix 5-6-12-15-16 and β-strands 5-6) of the catalytic core. The tetramer is an inactive form of the enzyme.
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*Autoinhibition (at the dimer scale)
*Autoinhibition (at the dimer scale)
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The Bateman modules natively prevents the access of the substrates to the catalytic site (PLP cavity) through loops 145-148, 171-174, 191-202 (closed state).
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The Bateman modules natively prevents the access of the substrates to the catalytic site (PLP cavity) through loops 145-148, 171-174, 191-202 (closed state).

Revision as of 19:38, 29 January 2016

This Sandbox is Reserved from 15/12/2015, through 15/06/2016 for use in the course "Structural Biology" taught by Bruno Kieffer at the University of Strasbourg, ESBS. This reservation includes Sandbox Reserved 1120 through Sandbox Reserved 1159.
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Human cystathionine β-synthase (hCBS)

Structure of the dimer form of CBS

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References

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