Sandbox Reserved 1645

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3D model represents these parts of fibrillin-1: <scene name='86/868178/Cbegf9/2'>cb-EGF9</scene>, <scene name='86/868178/Tb4/2'>TGF-bp 4 containing second hybrid domain</scene> and <scene name='86/868178/Cbegf10/1'>cb-EGF10</scene>.
3D model represents these parts of fibrillin-1: <scene name='86/868178/Cbegf9/2'>cb-EGF9</scene>, <scene name='86/868178/Tb4/2'>TGF-bp 4 containing second hybrid domain</scene> and <scene name='86/868178/Cbegf10/1'>cb-EGF10</scene>.
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The protein fibrillin-1 contains 59 subunits either called '''epidermal growth factor-like domain''' ([[EGF]]), or '''transforming growth factor β binding protein-like domain''' (8 [[TGF-bp]]). EGFs are repeated in tandem along with the whole protein which represents about 75% of the total Fibrillin-1 length, and they are interrupted by the insertion of the TGF-bp units, which contain 8 cysteines each (<scene name='86/868178/Disulfide_bridges_in_tgf-bp/2'>4 disulfide bridges</scene> are formed). In total, there are 47 motifs of EGF in one Fibrillin-1, but only 43 of them contain calcium-binding sequences. In consequence, these EGF are named cb-EGF for their ability to bind calcium cations. Each EGF or cb-EGF unit contains 6 residues of cysteine which form <scene name='86/868178/Disulfide_bridges/1'>3 disulfide bridges</scene> (CYS1-CYS3, CYS2-CYS4, CYS5-CYS6) stabilizing the secondary structure of the protein. Cb-EGF units contain also a <scene name='86/868178/Ca_binding_site/1'>Ca2+ binding site</scene> composed especially by amino acids which contain an atom of oxygen or groups with azote in their lateral chains (D,N,S,Q,E). These amino acids stabilize the calcium cation by interactions between positively charged cation and hetero-atoms (oxygen or azote) of the amino acid's lateral chain. Consequently, a pentagonal bipyramidal binding site is created in which one calcium cation is bound in every cb-EGF subunit of the fibrillin-1 protein. <ref>Julien Wipff, Yannick Allanore, and Catherine Boileau. (2009). Interactions entre la Fibrilline-1 et le TGF-β. ''Médecine Sciences Paris'', volume (25). https://www.medecinesciences.org/en/articles/medsci/full_html/2009/02/medsci2009252p161/medsci2009252p161.html</ref>
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The protein fibrillin-1 contains 59 subunits either called '''epidermal growth factor-like domain''' ([[EGF]]), or '''transforming growth factor β binding protein-like domain''' (8 [[TGF-bp]]). EGFs are repeated in tandem along with the whole protein which represents about 75% of the total Fibrillin-1 length, and they are interrupted by the insertion of the TGF-bp units, which contain 8 cysteines each (<scene name='86/868178/Disulfide_bridges_in_tgf-bp/2'>4 disulfide bridges</scene> are formed). In total, there are 47 motifs of EGF in one Fibrillin-1, but only 43 of them contain calcium-binding sequences. In consequence, these EGF are named cb-EGF for their ability to bind calcium cations. Each EGF or cb-EGF unit contains 6 residues of cysteine which form <scene name='86/868178/Disulfide_bridges/1'>3 disulfide bridges</scene> (CYS1-CYS3, CYS2-CYS4, CYS5-CYS6) stabilizing the secondary structure of the protein. Cb-EGF units contain also a <scene name='86/868178/Ca_binding_site/1'>Ca2+ binding site</scene> composed especially by amino acids which contain an atom of oxygen or groups with azote in their lateral chains (D,N,S,Q,E). These amino acids stabilize the calcium cation by interactions between positively charged cation and hetero-atoms (oxygen or azote) of the amino acid's lateral chain. Consequently, a pentagonal bipyramidal binding site is created in which one calcium cation is bound in every cb-EGF subunit of the fibrillin-1 protein. <ref>Sandra Schrenk Carola Cenzi Thomas Bertalot Maria Teresa Conconi Rosa Di Liddo, December 22. 2017, pages: 1213-1223,https://doi.org/10.3892/ijmm.2017.3343</ref>
== Biological Function ==
== Biological Function ==

Revision as of 18:01, 12 January 2021

This Sandbox is Reserved from 26/11/2020, through 26/11/2021 for use in the course "Structural Biology" taught by Bruno Kieffer at the University of Strasbourg, ESBS. This reservation includes Sandbox Reserved 1643 through Sandbox Reserved 1664.
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Fibrillin-1

3D structure of fibrillin-1 (PDB ID : 2W86)

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References

  1. Handford, P. A. (2000). Fibrillin-1, a calcium binding protein of extracellular matrix. Biochimica et Biophysica Acta (BBA) - Molecular Cell Research, 1498(2), 84–90. https://doi.org/10.1016/S0167-4889(00)00085-9
  2. Sandra Schrenk Carola Cenzi Thomas Bertalot Maria Teresa Conconi Rosa Di Liddo, December 22. 2017, pages: 1213-1223,https://doi.org/10.3892/ijmm.2017.3343
  3. Julien Wipff, Yannick Allanore, and Catherine Boileau. (2009). Interactions entre la Fibrilline-1 et le TGF-bp. Médecine Sciences Paris, volume (25). https://www.medecinesciences.org/en/articles/medsci/full_html/2009/02/medsci2009252p161/medsci2009252p161.html
  4. Marfan Syndrome.https://en.wikipedia.org/wiki/Marfan_syndrome Marfan syndrome
  5. E. Martínez-Quintana, F. Rodríguez-González, P. Garay-Sánchez, and A. Tugoresb. (2014).A Novel Fibrillin 1 Gene Mutation Leading to Marfan Syndrome with Minimal Cardiac Features. Molecular Syndormology, volume (5), 236-240.https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4188161/
  6. p.A. Handford. (2000).Fibrillin-1, a calcium-binding protein of extracellular matrix.Biochimica et Biophysica Acta (BBA) - Molecular Cell Research, volume (1498), 84-90.https://www.sciencedirect.com/science/article/pii/S0167488900000859
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