Collagen

From Proteopedia

(Difference between revisions)
Jump to: navigation, search
Line 43: Line 43:
__NOTOC__
__NOTOC__
In order to convince yourself that there is a difference in the interchain distances in the area of the Ala, <scene name='Collagen/1cag_measurements/2'>show distances</scene> between Gly (Ala) and Pro which form intratropocollagen hydrogen bonds. Hydrogen bonds are not formed between Ala and Pro because the distances between the atoms forming the bonds are too great. The absence of the intratropocollagen hydrogen bonds, which is due to replacing Gly with a residue having a longer side chain, disrupts collagen's rope-like structure and is responsible for the symptoms of such human diseases as osteogenesis imperfecta and certain Ehlers-Danlos syndromes.
In order to convince yourself that there is a difference in the interchain distances in the area of the Ala, <scene name='Collagen/1cag_measurements/2'>show distances</scene> between Gly (Ala) and Pro which form intratropocollagen hydrogen bonds. Hydrogen bonds are not formed between Ala and Pro because the distances between the atoms forming the bonds are too great. The absence of the intratropocollagen hydrogen bonds, which is due to replacing Gly with a residue having a longer side chain, disrupts collagen's rope-like structure and is responsible for the symptoms of such human diseases as osteogenesis imperfecta and certain Ehlers-Danlos syndromes.
 +
 +
==3D structures of collagen==
 +
 +
[[3hqv]], [[3hr2]] – Col I – rat – fiber diffraction<br />
 +
[[1q7d]] - hCol I α1 integrin-binding domain – human<br />
 +
[[1u5m]] - hCol II α1 (mutant) <br />
 +
[[3dmw]] - hCol III α1<br />
 +
[[1li1]] - hCol IV α Nc1 domain<br />
 +
[[1t60]], [[1t61]], [[1m3d]] - Col IV α Nc1 domain – bovine<br />
 +
[[1kth]] - hCol III α3 Kunitz type domain<br />
 +
[[1kun]] - hCol III α3 Kunitz type domain – NMR<BR />
 +
[[2knt]], [[1knt]] - hCol VI Kunitz type domain<br />
 +
[[1o91]] - mCol VIII α1 Nc1 domain - mouse<br />
 +
[[2uur]] - hCol IX α1 Nc4 domain<br />
 +
[[1gr3]] - hCol X α1 Nc1 domain<br />
 +
[[1b9p]], [[1b9q]] - Col IX α1 Nc4 domain (mutant) <br />
 +
[[3n3f]] – hCol XIV Nc1 domain<br />
 +
[[1dy2]] - mCol XV endostatin domain<br />
 +
[[3hon]], [[3hsh]] - hCol XVIII tetramerization domain<br />
 +
[[2ekj]], [[2ee3]] - hCol XX α1 fn3 domain<br />
 +
[[2dkm]] - hCol XX α1 fn3 domain - NMR<BR />
 +
[[3ipn]] – Col modified<br />
 +
[[1wzb]], [[1itt]], [[1k6f]] – Col triple helix<br />
 +
[[1zpx]], [[1sp7]], [[1sop]] – Col mini – hydra – NMR<BR />
 +
[[2cuo]] – Col model (PPG)
 +
 +
===Collagen complex with binding proteins===
 +
 +
[[3ejh]] – hCol I α1 C-terminal + fibronectin<br />
 +
[[2fse]] – hCol II + MHC HLA-DR1<br />
 +
[[2seb]] - hCol II + MHC HLA-DR4<br />
 +
[[2v53]] - hCol III α1 + Sparc<br />
 +
[[2wuh]] – hCol + discoidin domain receptor 2<br />
 +
[[1dzi]] – Col + integrin α2 domain<br />
 +
==References==
==References==

Revision as of 10:06, 22 May 2011

Structure of Collagen (PDB entry 4CLG or 1CAG)

Drag the structure with the mouse to rotate
 

PDB ID 4CLG

Drag the structure with the mouse to rotate

PDB ID 1CAG

Drag the structure with the mouse to rotate
Gly Packing in 4CLG.PDB ()
Ala Packing in 1CAG.PDB (Mutated Collagen) ()


In order to convince yourself that there is a difference in the interchain distances in the area of the Ala, between Gly (Ala) and Pro which form intratropocollagen hydrogen bonds. Hydrogen bonds are not formed between Ala and Pro because the distances between the atoms forming the bonds are too great. The absence of the intratropocollagen hydrogen bonds, which is due to replacing Gly with a residue having a longer side chain, disrupts collagen's rope-like structure and is responsible for the symptoms of such human diseases as osteogenesis imperfecta and certain Ehlers-Danlos syndromes.

3D structures of collagen

3hqv, 3hr2 – Col I – rat – fiber diffraction
1q7d - hCol I α1 integrin-binding domain – human
1u5m - hCol II α1 (mutant)
3dmw - hCol III α1
1li1 - hCol IV α Nc1 domain
1t60, 1t61, 1m3d - Col IV α Nc1 domain – bovine
1kth - hCol III α3 Kunitz type domain
1kun - hCol III α3 Kunitz type domain – NMR
2knt, 1knt - hCol VI Kunitz type domain
1o91 - mCol VIII α1 Nc1 domain - mouse
2uur - hCol IX α1 Nc4 domain
1gr3 - hCol X α1 Nc1 domain
1b9p, 1b9q - Col IX α1 Nc4 domain (mutant)
3n3f – hCol XIV Nc1 domain
1dy2 - mCol XV endostatin domain
3hon, 3hsh - hCol XVIII tetramerization domain
2ekj, 2ee3 - hCol XX α1 fn3 domain
2dkm - hCol XX α1 fn3 domain - NMR
3ipn – Col modified
1wzb, 1itt, 1k6f – Col triple helix
1zpx, 1sp7, 1sop – Col mini – hydra – NMR
2cuo – Col model (PPG)

Collagen complex with binding proteins

3ejh – hCol I α1 C-terminal + fibronectin
2fse – hCol II + MHC HLA-DR1
2seb - hCol II + MHC HLA-DR4
2v53 - hCol III α1 + Sparc
2wuh – hCol + discoidin domain receptor 2
1dzi – Col + integrin α2 domain


References

  1. J.M. Chen, C.E. Kung, S.H. Feairheller, E.M. Brown, AN ENERGETIC EVALUATION OF A "SMITH" COLLAGEN MICROFIBRIL MODEL, J. Protein Chem., 10, 535, 1991
  2. J.BELLA,M.EATON,B.BRODSKY,H.M.BERMAN, CRYSTAL AND MOLECULAR STRUCTURE OF A COLLAGEN-LIKE PEPTIDE AT 1.9 A RESOLUTION. SCIENCE, 266, 75, 1994

External Links

Movies of assembly of triple helix of type I and IV collagen.

Contributor

Much of the content of this page was taken from an earlier non-Proteopedia version of Collagen which was in large part developed by Gretchen Heide Bisbort, a 1999 graduate of Messiah College.

Personal tools