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Carbohydrate Binding Module Families

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This pages lists all the Carbohydrate Binding Module (CBM) Family pages in CAZypedia that have been given Curator Approved status, as well as those that are currently under construction.

Several key reviews provide a comprehensive overview of the structure and function of these non-catalytic, accessory modules, which are often found in train with other CAZyme modules, e.g. Glycoside Hydrolases and Polysaccharide Lyases [1, 2, 3, 4, 5]. The classification of CBMs mirrors that of the CAZy database [6].

Note: We just beginning to develop individual CBM pages in CAZypedia at this point, although a long-term goal is to have complete coverage of all of the CBM families represented in the CAZy database. This effort is being led by ^^^Alicia Lammerts van Bueren^^^ and the Board of Curators. If you would like to become involved in the development of the CBM pages, please contact ^^^Alicia Lammerts van Bueren^^^ directly, or using this form.

Curator Approved

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These pages have been approved by the Responsible Curator as essentially complete. CAZypedia is a living document, so further improvement of these pages is still possible; please see the individual pages for more information.

There are currently 63 Curator approved Glycoside Hydrolase Family pages in CAZypedia.

Under construction

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These pages are currently under construction in CAZypedia. As such, the Responsible Curator has deemed that the page's content is not quite up to CAZypedia's standards for full public consumption. All information on these pages should therefore be considered to be under revision and may be subject to major changes.

There are currently 8 Glycoside Hydrolase Family pages Under construction in CAZypedia.


References

  1. Boraston AB, Bolam DN, Gilbert HJ, and Davies GJ. (2004). Carbohydrate-binding modules: fine-tuning polysaccharide recognition. Biochem J. 2004;382(Pt 3):769-81. DOI:10.1042/BJ20040892 | PubMed ID:15214846 [Boraston2004]
  2. Shoseyov O, Shani Z, and Levy I. (2006). Carbohydrate binding modules: biochemical properties and novel applications. Microbiol Mol Biol Rev. 2006;70(2):283-95. DOI:10.1128/MMBR.00028-05 | PubMed ID:16760304 [Shoseyov2006]
  3. Hashimoto H (2006). Recent structural studies of carbohydrate-binding modules. Cell Mol Life Sci. 2006;63(24):2954-67. DOI:10.1007/s00018-006-6195-3 | PubMed ID:17131061 [Hashimoto2006]
  4. Guillén D, Sánchez S, and Rodríguez-Sanoja R. (2010). Carbohydrate-binding domains: multiplicity of biological roles. Appl Microbiol Biotechnol. 2010;85(5):1241-9. DOI:10.1007/s00253-009-2331-y | PubMed ID:19908036 [Guillen2010]
  5. Ficko-Blean E and Boraston AB. (2012). Insights into the recognition of the human glycome by microbial carbohydrate-binding modules. Curr Opin Struct Biol. 2012;22(5):570-7. DOI:10.1016/j.sbi.2012.07.009 | PubMed ID:22858095 [Ficko-Blean2012]
  6. Cantarel BL, Coutinho PM, Rancurel C, Bernard T, Lombard V, and Henrissat B. (2009). The Carbohydrate-Active EnZymes database (CAZy): an expert resource for Glycogenomics. Nucleic Acids Res. 2009;37(Database issue):D233-8. DOI:10.1093/nar/gkn663 | PubMed ID:18838391 [Cantarel2009]

All Medline abstracts: PubMed