Sandbox Reserved 1135
From Proteopedia
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This structure of CaM bound to the eNOS CaM binding domain peptide has been obtained thanks to a solution NMR<ref>Solution NMR, Instruct Interacting Biology. [http://www.structuralbiology.eu/resources/platforms/nmr/solution-nmr]</ref>, a nuclear magnetic resonance that enables the determination of structures but also interactions between molecules. | This structure of CaM bound to the eNOS CaM binding domain peptide has been obtained thanks to a solution NMR<ref>Solution NMR, Instruct Interacting Biology. [http://www.structuralbiology.eu/resources/platforms/nmr/solution-nmr]</ref>, a nuclear magnetic resonance that enables the determination of structures but also interactions between molecules. | ||
- | == | + | == Structure and function == |
- | |||
- | == Structural highlights == | ||
The 3D structure shown here represents the interaction between the <scene name='71/719876/Cam/1'>CaM protein</scene>, and the <scene name='71/719876/Cam_binding_domain/2'>CaM binding domain of eNOS</scene>. | The 3D structure shown here represents the interaction between the <scene name='71/719876/Cam/1'>CaM protein</scene>, and the <scene name='71/719876/Cam_binding_domain/2'>CaM binding domain of eNOS</scene>. | ||
- | To see <scene name='71/719876/Cam_binding_domain/2'>CaM binding domain of eNOS</scene> | ||
- | To see <scene name='71/719876/Cam/1'>CaM protein</scene> | ||
== References == | == References == | ||
<references/> | <references/> |
Revision as of 17:06, 28 January 2016
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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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Introduction
This structure of CaM bound to the eNOS CaM binding domain peptide has been obtained thanks to a solution NMR[1], a nuclear magnetic resonance that enables the determination of structures but also interactions between molecules.
Structure and function
The 3D structure shown here represents the interaction between the , and the .