Sandbox Reserved 1392
From Proteopedia
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==Human E-cadherin Protein== | ==Human E-cadherin Protein== | ||
<StructureSection load='2o72' size='340' side='right' caption='Caption for this structure' scene=''> | <StructureSection load='2o72' size='340' side='right' caption='Caption for this structure' scene=''> | ||
- | This is a default text for your page ''''''. Click above on '''edit this page''' to modify. Be careful with the < and > signs. | ||
- | You may include any references to papers as in: the use of JSmol in Proteopedia <ref>DOI 10.1002/ijch.201300024</ref> or to the article describing Jmol <ref>PMID:21638687</ref> to the rescue. | ||
== Function == | == Function == | ||
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<scene name='77/777712/Backbone_of_molecule/1'>Back bone of E-cadherin</scene> | <scene name='77/777712/Backbone_of_molecule/1'>Back bone of E-cadherin</scene> | ||
+ | The backbone of human E-cadherin is made up of two major parts, the beta-sheets and the helix region. Beta- sheets are a secondary structure in the E-cadherin molecule. Binding between beta-sheet regions of different E-cadherin molecules helps facilitate intermolecular adhesion. Beta-sheets allow binding between E-cadherin molecules in both monomer and dimer states (i.e. can bind as single molecules or to a chain of already bound molecules.) <scene name='77/777712/Beta-sheets/1'>Beta sheets</scene> | ||
+ | The helix region of the E-cadherin molecule prevents the abnormal regulation of the junction complex, thus ensuring complete and correct translation of the spliced mRNA into protein. <scene name='77/777712/Helix_region/1'>Helix Region</scene> | ||
== References == | == References == | ||
<references/> | <references/> |
Current revision
This Sandbox is Reserved from January through July 31, 2018 for use in the course HLSC322: Principles of Genetics and Genomics taught by Genevieve Houston-Ludlam at the University of Maryland, College Park, USA. This reservation includes Sandbox Reserved 1311 through Sandbox Reserved 1430. |
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Human E-cadherin Protein
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