Cyanobacterial Carbohydrate Polymers

Cyanobacterial carbohydrate polymers are complex sugars synthesized by cyanobacteria, where they support cell structure, energy storage, protection, and interactions with the surrounding environment. Their formation begins with carbon fixed through photosynthesis and converted into activated sugar precursors, which glycosyltransferase enzymes join through specific glycosidic linkages to produce storage polysaccharides or extracellular polymers. In biochemistry, analyzing their composition, branching, molecular size, and chemical modifications helps connect polymer structure with properties such as solubility, stability, and biological activity. These materials also provide potential platforms for sustainable biomaterials, biotechnology, and bioactive compound development.

Cyanobacterial Carbohydrate Polymers - Related Videos

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JoVE Journal - Biochemistry

Looking Outwards: Isolation of Cyanobacterial Released Carbohydrate Polymers and Proteins

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Cited by 8 •

2019

Here, protocols for the isolation of cyanobacterial released carbohydrate polymers and isolation of their exoproteomes are described. Both procedures embody key steps to obtain polymers or proteins with high purity degrees that can be used for further analysis or applications. They can also be easily adapted according to specific user needs.

Chromogenic Polymer Hydrogel-Based Enzyme Screening Assay: A High Throughput Method to Screen the Carbohydrate-Active Enzymes Using Synthetic Substrates

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2025

In this video, we demonstrate a high throughput assay for carbohydrate-active enzyme screening using insoluble chromogenic polymer hydrogel substrates. The enzyme degrades these substrates into a soluble colored product that can be quantified by measuring the color intensity of the product.

Preparation of Cyanobacterial Culture for Biomass Production

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2025

Source: Jiang, H., Ho, M. Isolation and Characterization of Intact Phycobilisome in Cyanobacteria. J. Vis. Exp.(2021).This video demonstrates the procedure for culturing cyanobacteria to obtain biomass by growing cells under continuous illumination with carbon dioxide supply and nutrient-rich conditions, followed by harvesting via centrifugation.

Photobleaching Cyanobacterial Pigments for Imaging Growth-Regulating Proteins

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2026

Source: Zhan, Y., et al. Photobleaching Enables Super-resolution Imaging of the FtsZ Ring in the Cyanobacterium Prochlorococcus. J. Vis. Exp. (2018).This video demonstrates the procedure for photobleaching pigments in cyanobacterial cells using xenon light under cold conditions to improve the fluorescence imaging of growth-regulating proteins.

A Technique to Detect Cyanobacterial Strains Using an Antibody Microarray Chip

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2025

This video demonstrates a method to detect the Cyanobacterial strains in an environmental sample using an antibody microarray chip. Samples carrying various bacteria interact with printed antibodies, and immunostaining with fluorophore-labeled anti-cyanobacterial-strain antibodies reveals the presence of specific cyanobacterial strains through fluorescence in distinct spots.

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