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Difference between revisions of "Carbohydrate Binding Module Family 92"

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== Family Firsts ==
 
== Family Firsts ==
;First Identified
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;First Identified::The first member Cgk16A-CBM92 is a component of a κ-carrageenase Cgk16A [2], which was discovered from a marine bacterium ''Wenyingzhuangia aestuarii'' OF219.
:The first member Cgk16A-CBM92 is a component of a κ-carrageenase Cgk16A [2], which was discovered from a marine bacterium ''Wenyingzhuangia aestuarii'' OF219.  
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;First Structural Characterization: No three-dimensional structure has been solved in this CBM family at present.
  
 
== References ==
 
== References ==

Revision as of 07:51, 4 April 2023

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This page is currently under construction. This means that the Responsible Curator has deemed that the page's content is not quite up to CAZypedia's standards for full public consumption. All information should be considered to be under revision and may be subject to major changes.


CAZy DB link
http://www.cazy.org/CBM92.html

Ligand specificities

The first and only hereinto characterized member in the CBM92 family is Cgk16A-CBM92 [1]. The CBM could specifically bind to carrageenan and showed no significant difference in the affinity to κ- and ι-carrageenan.

Structural Features

No three-dimensional structure has been solved in this CBM family at present.

Functionalities

A carrageenan-specific fluorescent probe was successfully constructed by fusing Cgk16A-CBM92 with a green fluorescent protein. The in situ visualization of carrageenan in red alga Kappaphycus alvarezii was realized by utilizing the fluorescent probe [1].

Family Firsts

First Identified
:The first member Cgk16A-CBM92 is a component of a κ-carrageenase Cgk16A [2], which was discovered from a marine bacterium Wenyingzhuangia aestuarii OF219.
First Structural Characterization
No three-dimensional structure has been solved in this CBM family at present.

References

  1. Mei X, Chang Y, Shen J, Zhang Y, Han J, and Xue C. (2022). Characterization of a Novel Carrageenan-Specific Carbohydrate-Binding Module: a Promising Tool for the In Situ Investigation of Carrageenan. J Agric Food Chem. 2022;70(29):9066-9072. DOI:10.1021/acs.jafc.2c03139 | PubMed ID:35830544 [Mei2022]
  2. Shen J, Chang Y, Chen F, and Dong S. (2018). Expression and characterization of a κ-carrageenase from marine bacterium Wenyingzhuangia aestuarii OF219: A biotechnological tool for the depolymerization of κ-carrageenan. Int J Biol Macromol. 2018;112:93-100. DOI:10.1016/j.ijbiomac.2018.01.075 | PubMed ID:29355636 [Shen2018]

All Medline abstracts: PubMed