Sandbox Reserved 1678
From Proteopedia
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== Structural highlights == | == Structural highlights == | ||
- | Alginate lyase is a <scene name='87/873240/Dimer/2'>dimer</scene> (contains two domains). One domain is shown in blue, and the other is in green. Being in a dimer form allows the protein to adapt to the seawater salinity of the Arctic ocean from which is originates. | + | Alginate lyase is a <scene name='87/873240/Dimer/2'>dimer</scene> (contains two domains). One domain is shown in blue, and the other is in green. Being in a dimer form allows the protein to adapt to the seawater salinity of the Arctic ocean from which is originates. The protein's tertiary structure is held together by many hydrogen bonds and some cation-pi interactions. Each domain of the protein is made of <scene name='87/873240/Alpha_helices_and_beta_sheets/1'>6 alpha helices and 15 beta sheets</scene>. The alpha helices are shown in yellow, and the beta sheets are shown in pink. |
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- | The protein's tertiary structure is held together by many hydrogen bonds and some cation-pi interactions. | + | |
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- | Each domain of the protein is made of <scene name='87/873240/Alpha_helices_and_beta_sheets/1'>6 alpha helices and 15 beta sheets</scene>. The alpha helices are shown in yellow, and the beta sheets are shown in pink. | + | |
Alginate lyase contains a main ligand that is an oligosaccharide: <scene name='87/873240/7c8f_view_2/1'>beta-D-mannopyranuronic acid-(1,4)-beta-D-mannopyranuronic acid.</scene> | Alginate lyase contains a main ligand that is an oligosaccharide: <scene name='87/873240/7c8f_view_2/1'>beta-D-mannopyranuronic acid-(1,4)-beta-D-mannopyranuronic acid.</scene> |
Revision as of 02:48, 16 April 2021
This Sandbox is Reserved from 01/25/2021 through 04/30/2021 for use in Biochemistry taught by Bonnie Hall at Grand View University, Des Moines, USA. This reservation includes Sandbox Reserved 1665 through Sandbox Reserved 1682. |
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Alginate Lyase (AlyC3)
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References
- ↑ Hanson, R. M., Prilusky, J., Renjian, Z., Nakane, T. and Sussman, J. L. (2013), JSmol and the Next-Generation Web-Based Representation of 3D Molecular Structure as Applied to Proteopedia. Isr. J. Chem., 53:207-216. doi:http://dx.doi.org/10.1002/ijch.201300024
- ↑ Herraez A. Biomolecules in the computer: Jmol to the rescue. Biochem Mol Biol Educ. 2006 Jul;34(4):255-61. doi: 10.1002/bmb.2006.494034042644. PMID:21638687 doi:10.1002/bmb.2006.494034042644