Elizeu/sandbox/citocromo c

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<Structure load='Oxyhaemoglobin.pdb' size='350' frame='true' align='right' caption='OxyHb='Insert optional scene name here' />
<Structure load='Oxyhaemoglobin.pdb' size='350' frame='true' align='right' caption='OxyHb='Insert optional scene name here' />
Haemoglobin is a tetrameric globular protein able to transport small molecules such as oxygen and carbon dioxide around the body to support life. Its a great example of how a protein's binding affinity to its ligand can change in response to changes in its environment. This is facilitated by small conformational changes that occur in and between subunits in a cooperative manner ultimately allowing oxygen to be picked up in the lungs and delivered to the tissues.
Haemoglobin is a tetrameric globular protein able to transport small molecules such as oxygen and carbon dioxide around the body to support life. Its a great example of how a protein's binding affinity to its ligand can change in response to changes in its environment. This is facilitated by small conformational changes that occur in and between subunits in a cooperative manner ultimately allowing oxygen to be picked up in the lungs and delivered to the tissues.
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This is oxyhaemoglobin. Embedded in each monomer is the haeme prosthetic group with bound (ferrous) iron. Iron makes 6 coordination bonds. Four in the plane of the haeme to 4 nitrogens (blue); one to the proximal Histidine imidizole nitrogen and one reserved for oxygen.
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This is <scene name='55/559112/A_chain_haeme/1'>OxyHaemoglobin</scene>. Embedded in each monomer is the haeme prosthetic group with bound (ferrous) iron. Iron makes 6 coordination bonds. Four in the plane of the haeme to 4 nitrogens (blue); one to the proximal Histidine imidizole nitrogen and one reserved for oxygen.
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<scene name='55/559112/A_chain_haeme/1'>OxyHaemoglobin</scene>
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== Exploring the Structure ==
== Exploring the Structure ==
[[Image:oxyHb.png]]
[[Image:oxyHb.png]]

Revision as of 09:08, 21 January 2015

The Structure Function Relationship of Haemoglobin

Introduction

Drag the structure with the mouse to rotate

Haemoglobin is a tetrameric globular protein able to transport small molecules such as oxygen and carbon dioxide around the body to support life. Its a great example of how a protein's binding affinity to its ligand can change in response to changes in its environment. This is facilitated by small conformational changes that occur in and between subunits in a cooperative manner ultimately allowing oxygen to be picked up in the lungs and delivered to the tissues. This is . Embedded in each monomer is the haeme prosthetic group with bound (ferrous) iron. Iron makes 6 coordination bonds. Four in the plane of the haeme to 4 nitrogens (blue); one to the proximal Histidine imidizole nitrogen and one reserved for oxygen.

Exploring the Structure

Image:OxyHb.png

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