Sandbox Reserved 1493

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The extracellular N-Terminus forms a cap over the β-propeller domain which is folded by seven successive blades of aminoterminal repeats. Each blade is a β-hairpin loop-like structure composed of 4 antiparallel β strands located in each repeat and connected by loops of the surface. This β-propeller is linked to a thigh and two calf domains, which form the leg structure that supports the heavy head. The total forms the stalk of the αIIb subunit. The region between the thigh and the first calf domain is the site at which the head region bends (in the inactivated form of the integrin) is called the knee of the subunit.
The extracellular N-Terminus forms a cap over the β-propeller domain which is folded by seven successive blades of aminoterminal repeats. Each blade is a β-hairpin loop-like structure composed of 4 antiparallel β strands located in each repeat and connected by loops of the surface. This β-propeller is linked to a thigh and two calf domains, which form the leg structure that supports the heavy head. The total forms the stalk of the αIIb subunit. The region between the thigh and the first calf domain is the site at which the head region bends (in the inactivated form of the integrin) is called the knee of the subunit.
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The β-propeller hosts multiple cation biding sites. The last 3 or 4 blades bind <scene name='80/802667/Ca_ions_on_beta-propeller/1'>Ca2+ ions</scene> which influence ligand binding on the lower side of the blades and plays an important role in biogenesis and stability of the heterodimer. The I domain inserted between blades 2 and 3 in the β-propeller follows a Rossman fold with five β-sheets surrounded by seven α-helices. Ligand binding occurs between the β-propeller and the β I domain of the β3 subunit via a coordinating Mg2+ ion in the MIDAS of the β3 subunit.
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The β-propeller hosts multiple cation biding sites. The last 3 or 4 blades bind <scene name='80/802667/Ca_ions_on_beta-propeller/2'>Ca2+ ions</scene> which influence ligand binding on the lower side of the blades and plays an important role in biogenesis and stability of the heterodimer. The I domain inserted between blades 2 and 3 in the β-propeller follows a Rossman fold with five β-sheets surrounded by seven α-helices. Ligand binding occurs between the β-propeller and the β I domain of the β3 subunit via a coordinating Mg2+ ion in the MIDAS of the β3 subunit.
The RGD binding site (Arg-Gly-Asp) is in a crevice in this region, inserted between the β-propeller and β I domains. The Arg side chain is located in a groove on the upper surface of the propeller and the Asp carboxylate protruding into a cleft on the β I surface.
The RGD binding site (Arg-Gly-Asp) is in a crevice in this region, inserted between the β-propeller and β I domains. The Arg side chain is located in a groove on the upper surface of the propeller and the Asp carboxylate protruding into a cleft on the β I surface.

Revision as of 02:10, 11 January 2019

This Sandbox is Reserved from 06/12/2018, through 30/06/2019 for use in the course "Structural Biology" taught by Bruno Kieffer at the University of Strasbourg, ESBS. This reservation includes Sandbox Reserved 1480 through Sandbox Reserved 1543.
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Integrin αIIbβ3 (2VDL)

Integrin αIIbβ3 (or glycoprotein IIb/IIIa) is a complex present on the membrane of platelets that intervenes in the activation, adherence and aggregation of platelets during clotting. It is a cation-dependant heterodimeric transmembrane receptor containing a large extracellular headpiece and short intracellular tails. It is synthesized in megakaryocytes.

Its particular shape and localisation on the membrane allows both ligand binding and transduction of the activation signal. It is the dominant integrin on platelets with 70,000 to 90,000 receptors expressed on each platelet in the resting state.

The headpiece (2VDL) of integrin αIIbβ3 enables cation-facilitated ligand binding with multiple ligands (most known being fibrinogen, fibronectin, von Willebrand factors, thrombospondin and vitronectin). Binding affinity is dynamic and depends on the conformational status of the receptor.

2VDL Headpiece of integrin αIIbβ3

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References

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