Collagen Structure & Function: Difference between revisions
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These three α-chains are then twisted around one another in a rope-like manner to produce the overall tightly packed triple-helical form of the molecule. The interaction of α-chains is stabilized via interchain hydrogen bonding making the molecule fairly resistant to attack by other molcules. Each α-chain is surrounded by a hydration sphere which allows a hydrogen bonding network to be present between the water molecules and the peptide acceptor groups.<ref name="collalike" />. This hydrogen bonding occurs when the amino group (NH) of a glycine residue forms a peptide bond with the carbonyl (C=0) of an adjacent residue. The overall molecule is approxiametly 300nm long and 1.5-2nm in diameter.<ref name="collalike" />. | These three α-chains are then twisted around one another in a rope-like manner to produce the overall tightly packed triple-helical form of the molecule. The interaction of α-chains is stabilized via interchain hydrogen bonding making the molecule fairly resistant to attack by other molcules. Each α-chain is surrounded by a hydration sphere which allows a hydrogen bonding network to be present between the water molecules and the peptide acceptor groups.<ref name="collalike" />. This hydrogen bonding occurs when the amino group (NH) of a glycine residue forms a peptide bond with the carbonyl (C=0) of an adjacent residue. The overall molecule is approxiametly 300nm long and 1.5-2nm in diameter.<ref name="collalike" />. | ||
The image on the right-hand side has each side chain colored a different color to shown how each individual <scene name='Sandbox_168/Helices/1'> | The image on the right-hand side has each side chain colored a different color to shown how each individual <scene name='Sandbox_168/Helices/1'>helices</scene> interact with the others to form the overall molecule. The <scene name='Sandbox_168/Myscene/1'>active sites</scene> | ||
have also been illustrated to point out their positions in the triple-helix. | have also been illustrated to point out their positions in the triple-helix. | ||
[[Image:collagen_(alpha_chain).jpg | thumb |'''Figure 1.''' Amino Acid residues in collagen. Gly, Pro and Hydroxyproline residues present in a collagen molecule <ref name="residues"/>.]] | [[Image:collagen_(alpha_chain).jpg |400px| thumb |'''Figure 1.''' Amino Acid residues in collagen. Gly, Pro and Hydroxyproline residues present in a collagen molecule <ref name="residues"/>.]] | ||
{{Clear}} | |||
==Function== | ==Function== | ||
There are close to 30 different types of collagen that have been identified so far.<ref name="types">PMID:17581806</ref>. | There are close to 30 different types of collagen that have been identified so far.<ref name="types">PMID:17581806</ref>. | ||
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*Atopic Dermatitis (III) | *Atopic Dermatitis (III) | ||
</StructureSection> | |||
==References== | ==References== | ||
<references/> | <references/> | ||
Latest revision as of 13:15, 19 May 2018
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References
Proteopedia Page Contributors and Editors (what is this?)
Daman K. Kandola, Andrea Gorrell, Alexander Berchansky, Luis Netto, David Canner
